The library
Every source, on one page each.
The papers, patents, reports, books, talks and videos this site teaches from — each as a single sheet: the plain-language summary first, then what it claims and where that sits on the maturity scale, then the text itself where the rights allow, and always the way in to the original.
805 documents
By chapter
01 The evidence ladder · 4202 The reference documents and the institutional record · 5303 What the vacuum is · 9304 Casimir physics and vacuum-force engineering · 8505 Energy from the vacuum · 3906 The vacuum at cosmic scale · 4607 The vacuum as a quantum fluid · 4308 Fusion machines: pinches, focus devices and inertial drivers · 11509 Lattice confinement fusion · 11510 Inertia and gravity from the vacuum · 5211 Gravity control and superconductors · 6812 Inertial mass reduction, the Navy patents and transmedium craft · 5013 The metric, warp drives and wormholes · 7114 Wormholes, energy conditions and the negative-energy budget · 5415 Scalar waves and the field behind the fields · 7516 Plasmoids, charge clusters and the orbs · 9017 The unified picture · 28
01 The evidence ladder
- STM-D-0026The Logic of Scientific DiscoveryKarl Popper · 1959 · BookSettled physics
- STM-D-0029Why Most Published Research Findings Are FalseJohn Ioannidis · 2005 · PaperPublished and peer-reviewed
- STM-D-0051An Essay towards solving a Problem in the Doctrine of ChancesBayes, Price · 1763 · PaperSettled physics
- STM-D-0054Gravity modification by high-temperature superconductors (null replication)C. Woods, J. Helme, S. Cooke · 2001 · PaperPublished and peer-reviewed
- STM-D-0071Revisiting the cold case of cold fusionCurtis P. Berlinguette, Yet-Ming Chiang, Jeremy N. Munday · 2019 · PaperPublished and peer-reviewed
- STM-D-0175DIRD Maverick Inventor Versus Corporate Inventor-Where Will the Next major Innovations AriseDIA / AAWSAP contractor · 2010 · ReportWhat to watch
- STM-D-0339Risk and Scientific Reputation: Lessons from Cold FusionHuw Price · 2022 · PaperWhat to watch
- STM-D-0347Investigation of the Alzofon weight reduction experiment using NMR spectroscopyWilly Stark, Hans-Joachim Grafe, Martin Tajmar · 2024 · PaperPublished and peer-reviewed
- STM-D-0383Bell’s theorem: Local realism versus quantum mechanicsM. Ferrero, T. W. Marshall, E. Santos · 1990 · PaperPublished and peer-reviewed
- STM-D-0399Comments on “Thermal behavior of polarized Pd/D electrodes prepared by co-deposition”Kirk L. Shanahan · 2005 · PaperPublished and peer-reviewed
- STM-D-0432A brief history of ball lightning observations by scientists and trained professionalsAlexander G. Keul · 2021 · PaperWhat to watch
- STM-D-0465Comment on “Hawking Radiation from Ultrashort Laser Pulse Filaments”Ralf Schützhold, William G. Unruh · 2011 · PaperWhat to watch
- STM-D-0486Anomalous Thrust Production from an RF Test Device Measured on a Low-Thrust Torsion PendulumDavid A. Brady, Harold G. White, Paul March · 2014 · PaperWhat to watch
- STM-D-0487Assessment of ball lightning cases by correlated LLS dataAlexander G. Keul, Gerhard Diendorfer · 2018 · PaperPublished and peer-reviewed
- STM-D-0509A systematic error in mass flow calorimetry demonstratedKirk L. Shanahan · 2002 · PaperPublished and peer-reviewed
- STM-D-0510Experimental Considerations in Superconductor Gravity ExperimentsGeorge Hathaway, Harald Reiss · 2012 · PaperPublished and peer-reviewed
- STM-D-0529Direct Thrust Measurements of an EMDrive and Evaluation of Possible Side-EffectsMartin Tajmar, Georg Fiedler · 2015 · PaperPublished and peer-reviewed
- STM-D-0538A comment on “A test of general relativity using the LARES and LAGEOS satellites and a GRACE Earth gravity model”, by I. Ciufolini et al.Lorenzo Iorio · 2017 · PaperWhat to watch
- STM-D-0561High-accuracy thrust measurements of the EMDrive and elimination of false-positive effectsM. Tajmar, O. Neunzig, M. Weikert · 2021 · PaperPublished and peer-reviewed
- STM-D-0568Observation of cold nuclear fusion in condensed matterS. E. Jones, E. P. Palmer, J. B. Czirr · 1989 · PaperPublished and peer-reviewed
- STM-D-0587Perfect Quantum Error Correcting CodeRaymond Laflamme, Cesar Miquel, Juan Pablo Paz · 1996 · PaperSettled physics
- STM-D-0602Lessons from Cold Fusion Archives and from HistoryJed Rothwell · 2015 · PaperPublished and peer-reviewed
- STM-D-0609The Quest for Fusion EnergyDaniel Jassby · 2022 · ArticleWhat to watch
- STM-D-0628Some theoretical aspects of observation of acceleration induced thermalityYefim S. Levin · 2025 · PaperWhat to watch
- STM-D-0645The Ball Lightning Controversy: Empirical Case StudiesAlexander G. Keul · 2012 · PaperWhat to watch
- STM-D-0657The Superposition Principle of Waves Not Fulfilled under M. W. Evans' O(3) HypothesisErhard Wielandt · 2006 · PaperPublished and peer-reviewed
- STM-D-0719The Enigmatic PhotonMyron W. Evans, Jean-Pierre Vigier · 1999 · BookWhat to watch
- STM-D-0725Reply to “Comment on papers by K. Shanahan that propose to explain anomalous heat generated by cold fusion”, E. Storms, Thermochim. Acta, 2006Kirk L. Shanahan · 2006 · PaperPublished and peer-reviewed
- STM-D-0736The SpaceDrive project - Thrust balance development and new measurements of the Mach-Effect and EMDrive ThrustersMatthias Kößling, Maxime Monette, Marcel Weikert · 2019 · PaperPublished and peer-reviewed
- STM-D-0754Theoretical Discovery, Experiment, and Controversy in the Aharonov-Bohm Effect: An Oral History InterviewYakir Aharonov, Guy Hetzroni · 2025 · PaperSettled physics
- STM-D-0758Improved instrumental techniques, including isotopic analysis, applicable to the characterization of unusual materials with potential relevance to aerospace forensicsGarry P. Nolan, Jacques F. Vallee, Sizun Jiang · 2022 · PaperPublished and peer-reviewed
- STM-D-0778Inertia as a zero-point-field force: Critical analysis of the Haisch-Rueda-Puthoff inertia theoryYefim S. Levin · 2009 · PaperPublished and peer-reviewed
- STM-D-0804Exploring artificial intelligence techniques to research low energy nuclear reactionsAnasse Bari, Tanya Pushkin Garg, Yvonne Wu · 2024 · PaperPublished and peer-reviewed
- STM-D-0805Observation of Aharonov-Bohm Effect by Electron HolographyAkira Tonomura, Tsuyoshi Matsuda, Ryo Suzuki · 1982 · PaperSettled physics
- STM-D-0814Fusion IllusionsMichael Dittmar · 2008 · PaperWhat to watch
- STM-D-0831Nuclear energy: Status and future limitationsMichael Dittmar · 2012 · PaperWhat to watch
- STM-D-0882Twelve Axioms of Fusion Energy R&DDaniel L. Jassby · 2020 · ReportWhat to watch
- STM-D-0894First comparisons of ball-lightning report website data with lightning-location-network dataKarl D. Stephan, Richard Sonnenfeld, Alexander G. Keul · 2022 · PaperPublished and peer-reviewed
- STM-D-0899Thermal behavior of polarized Pd/D electrodes prepared by co-depositionS. Szpak, P. A. Mosier-Boss, M. H. Miles · 2004 · PaperPublished and peer-reviewed
- STM-D-0971Measurement of the positive muon anomalous magnetic moment to 127 ppbMuon g-2 Collaboration · 2025 · PaperSettled physics
- STM-D-0973Detection of an anomalous pressure on a magneto-inertial-fusion load current diagnosticMark Hess, Brian Hutsel, Christopher Jennings · 2017 · PaperPublished and peer-reviewed
- STM-D-1114Measurements of attractive forces between flat platesM. J. Sparnaay · 1958 · PaperSettled physics
02 The reference documents and the institutional record
- STM-D-0005Breakthrough Propulsion Study: Assessing Interstellar Flight Challenges and ProspectsMarc G. Millis, Greason, Jeff, Stevenson, Rhonda · 2018 · ReportPublished and peer-reviewed
- STM-D-0014Inertia and Gravitation in the Zero-Point Field ModelHaisch, Bernhard, Rueda, Alfonso · 2000 · ReportPublished and peer-reviewed
- STM-D-0022The Central Intelligence Agency and Overhead Reconnaissance: The U-2 and OXCART Programs, 1954–1974Pedlow, Welzenbach, CIA History Staff · 1992 · ReportSettled physics
- STM-D-0032The Sheehy “operability” attestation (FOIA docs)The War Zone / J. Sheehy · 2020 · ReportWhat to watch
- STM-D-0035State of the Art and Evolution of High Energy Laser Weapons (DIRD 23)J. Albertine / DIA · 2010 · ReportSettled physics
- STM-D-0036Teleportation Physics StudyEric W. Davis · 2004 · ReportDesigned, not yet built
- STM-D-0056NASA Breakthrough Propulsion Physics program overviewMarc G. Millis · 1998 · ReportPublished and peer-reviewed
- STM-D-0060AARO Historical Record Report, Volume 1US Department of Defense, All-domain Anomaly Resolution Office · 2024 · ReportWhat to watch
- STM-D-0062Frontiers of Propulsion ScienceMarc G. Millis, Eric W. Davis · 2009 · BookPublished and peer-reviewed
- STM-D-0074DIRD Cognitive Limits on Simultaneous Control of Multiple Unmanned SpacecraftDIA / AAWSAP contractor · 2010 · ReportPublished and peer-reviewed
- STM-D-0075DIRD Quantum Tomography of Negative Energy States in the VacuumDIA / AAWSAP contractor · 2011 · ReportDesigned, not yet built
- STM-D-0076DIRD Aneutronic Fusion Propulsion IIDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0077DIRD BiomaterialsDIA / AAWSAP contractor · 2010 · ReportSettled physics
- STM-D-0175DIRD Maverick Inventor Versus Corporate Inventor-Where Will the Next major Innovations AriseDIA / AAWSAP contractor · 2010 · ReportWhat to watch
- STM-D-0183DIRD The Role of Superconductors in Gravity ResearchDIA / AAWSAP contractor · 2010 · ReportWhat to watch
- STM-D-0187DIRD Metallic Glasses: Status and Prospects for Aerospace ApplicationsDIA / AAWSAP contractor · 2009 · ReportSettled physics
- STM-D-0188DIRD Cockpits in the Era of Breakthrough FlightDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0189DIRD Invisibility Cloaking: Theory and ExperimentsDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0190DIRD Traversable Wormholes, Stargates, and Negative EnergyEric W. Davis, DIA / AAWSAP contractor · 2010 · ReportPublished and peer-reviewed
- STM-D-0192DIRD Advanced Space Propulsion Based on Vacuum (Spacetime Metric) EngineeringHarold E. Puthoff, DIA / AAWSAP contractor · 2010 · ReportPublished and peer-reviewed
- STM-D-0260NASA Breakthrough Propulsion Physics Workshop ProceedingsMillis, Marc G., Williamson, Gary Scott · 1999 · ReportOn the bench now
- STM-D-0284DIRD Warp Drive Dark energy and the Manipulation of Extra DimensionsRichard K. Obousy, Eric W. Davis, DIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0300DIRD Antigravity for Aerospace ApplicationsDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0302DIRD Pulsed High-Power Microwave Source TechnologyDIA / AAWSAP contractor · 2010 · ReportSettled physics
- STM-D-0307DIRD Detection and High Resolution Tracking of Vehicles at Hypersonic VelocitiesDIA / AAWSAP contractor · 2010 · ReportPublished and peer-reviewed
- STM-D-0312Advanced Space Propulsion Based on Vacuum (Spacetime Metric) EngineeringHarold E. Puthoff · 2010 · PaperPublished and peer-reviewed
- STM-D-0327DIRD An Introduction to the Statistical Drake EquationDIA / AAWSAP contractor · 2010 · ReportPublished and peer-reviewed
- STM-D-0328DIRD Anomalous Acute and Subacute Field Effects on Human Biological TissuesDIA / AAWSAP contractor · 2010 · ReportPublished and peer-reviewed
- STM-D-0329DIRD Aerospace Applications of Programmable MatterDIA / AAWSAP contractor · 2009 · ReportDesigned, not yet built
- STM-D-0330DIRD MHD Air Breathing Propulsion and Power for Aerospace ApplicationsDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0333DIRD Materials for Advanced Aerospace PlatformsDIA / AAWSAP contractor · 2010 · ReportSettled physics
- STM-D-0336DIRD Ultracapacitors as Energy and Power Storage Devices for Commercial and Military ApplicationsDIA / AAWSAP contractor · 2010 · ReportSettled physics
- STM-D-0337DIRD Metallic SpintronicsDIA / AAWSAP contractor · 2010 · ReportSettled physics
- STM-D-0342DIRD Technological Approaches to Controlling External DevicesDIA / AAWSAP contractor · 2010 · ReportPublished and peer-reviewed
- STM-D-0350DIRD Laser Lightcraft NanosatellitesDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0351DIRD Aneutronic Fusion PropulsionDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0354DIRD Negative mass PropulsionDIA / AAWSAP contractor · 2011 · ReportWhat to watch
- STM-D-0356DIRD Quantum Computing and Utilizing Organic Molecules in Automation TechnologyDIA / AAWSAP contractor · 2010 · ReportPublished and peer-reviewed
- STM-D-0358DIRD Advanced Nuclear Propulsion for Manned Deep Space MissionsDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0359DIRD Inertial Electrostatic Confinement FusionDIA / AAWSAP contractor · 2010 · ReportOn the bench now
- STM-D-0360DIRD Biosensors and BioMEMS-A Survey of the Present FieldDIA / AAWSAP contractor · 2010 · ReportOn the bench now
- STM-D-0367DIRD The Space Communication Implications of Quantum Entanglement and NonlocalityDIA / AAWSAP contractor · 2010 · ReportWhat to watch
- STM-D-0369DIRD Positron Aerospace PropulsionDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0370Metamaterials for Aerospace ApplicationsDIA / AAWSAP contractor · 2010 · ReportOn the bench now
- STM-D-0371DIRD Space Access: Where We’ve Been and Where We Could GoDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0377DIRD High-Frequency Gravitational Wave CommunicationsDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0604Progress in revolutionary propulsion physicsMarc G. Millis · 2010 · PaperPublished and peer-reviewed
- STM-D-0607Ultrafast holographic nanopatterning of biocatalytically formed silicaLawrence L. Brott, Rajesh R. Naik, David J. Pikas · 2001 · PaperPublished and peer-reviewed
- STM-D-0626Overview of the Galileo ProjectAbraham (Avi) Loeb, Frank H. Laukien · 2023 · PaperOn the bench now
- STM-D-0787FESAC Decadal Study: Clean, multi-purpose fusion power from small field-reversed configuration (FRC) reactorsSamuel A. Cohen · 2024 · ReportOn the bench now
- STM-D-0940Nonelectric Applications of FusionKathryn McCarthy, Charles Baker, Edward Cheng · 2002 · PaperPublished and peer-reviewed
- STM-D-1050New frontiers in space propulsion sciencesGlen A. Robertson, Paul A. Murad, Eric W. Davis · 2008 · PaperWhat to watch
- STM-D-1057Prospects for Breakthrough Propulsion From PhysicsMarc G. Millis · 2004 · ReportPublished and peer-reviewed
03 What the vacuum is
- STM-D-0020On the attraction between two perfectly conducting platesH. B. G. Casimir · 1948 · PaperSettled physics
- STM-D-0039On gauge invariance and vacuum polarization (Schwinger limit)Julian Schwinger · 1951 · PaperSettled physics
- STM-D-0055The Lightness of Being (“the Grid”)Frank Wilczek · 2008 · BookSettled physics
- STM-D-0365The Casimir Effect and the Quantum VacuumRobert L. Jaffe · 2005 · PaperSettled physics
- STM-D-0383Bell’s theorem: Local realism versus quantum mechanicsM. Ferrero, T. W. Marshall, E. Santos · 1990 · PaperPublished and peer-reviewed
- STM-D-0390Applying the thermodynamics of a stochastic classical point charge in a spherical charge to derive classical electromagnetic zero-point radiationDaniel C. Cole · 2026 · PaperPublished and peer-reviewed
- STM-D-0402Electrodynamics in the zero-point field: on the equilibrium spectral energy distribution and the origin of inertial massMichael Ibison · 2001 · PaperPublished and peer-reviewed
- STM-D-0416A Brief Survey of Stochastic ElectrodynamicsTimothy H. Boyer · 1980 · PaperPublished and peer-reviewed
- STM-D-0421Casimir EffectPeter W. Milonni, Umar Mohideen · 2009 · ArticleSettled physics
- STM-D-0424Demonstration of single-electron buildup of an interference patternAkira Tonomura, Junji Endo, Tsuyoshi Matsuda · 1989 · PaperSettled physics
- STM-D-0439Equilibrium for Classical Zero-Point Radiation: Detailed Balance Under Scattering by a Classical Charged Harmonic OscillatorTimothy H. Boyer · 2018 · PaperPublished and peer-reviewed
- STM-D-0444Direct sampling of electric-field vacuum fluctuationsC. Riek, D. V. Seletskiy, A. S. Moskalenko · 2015 · PaperSettled physics
- STM-D-0448A classical treatment of blackbody radiationT. W. Marshall · 1965 · PaperPublished and peer-reviewed
- STM-D-0449Classical spinning magnetic dipole in classical electrodynamics with classical electromagnetic zero-point radiationTimothy H. Boyer · 1984 · PaperPublished and peer-reviewed
- STM-D-0453An explanation of interference effects in the double slit experiment: Classical trajectories plus ballistic diffusion caused by zero-point fluctuationsG. Grössing, S. Fussy, J. Mesa Pascasio · 2012 · PaperPublished and peer-reviewed
- STM-D-0455Deriving an Electric Wave Equation from Weber’s ElectrodynamicsQingsong Li, Simon Maher · 2023 · PaperPublished and peer-reviewed
- STM-D-0458Entropy Considerations in Stochastic ElectrodynamicsDaniel C. Cole · 2024 · PaperPublished and peer-reviewed
- STM-D-0474Completing the Quantum Ontology with the Electromagnetic Zero-Point FieldLuis de la Peña, Ana María Cetto · 2024 · PaperPublished and peer-reviewed
- STM-D-0477Damped vacuum states of lightT G Philbin · 2016 · PaperPublished and peer-reviewed
- STM-D-0491Discrete Excitation Spectrum of a Classical Harmonic Oscillator in Zero-Point RadiationWayne Cheng-Wei Huang, Herman Batelaan · 2015 · PaperPublished and peer-reviewed
- STM-D-0501Back action in quantum electro-optic sampling of electromagnetic vacuum fluctuationsT. L. M. Guedes, I. Vakulchyk, D. V. Seletskiy · 2023 · PaperPublished and peer-reviewed
- STM-D-0503Electrically tunable moiré magnetism in twisted double bilayers of chromium triiodideGuanghui Cheng, Mohammad Mushfiqur Rahman, Andres Llacsahuanga Allcca · 2023 · PaperPublished and peer-reviewed
- STM-D-0521The Quantum Vacuum: An Introduction to Quantum ElectrodynamicsPeter W. Milonni · 1994 · BookSettled physics
- STM-D-0524Experimentally separating vacuum fluctuations from source radiationAlexa Herter, Frieder Lindel, Laura Gabriel · 2026 · PaperPublished and peer-reviewed
- STM-D-0531Dynamics Underlying the Gaussian Distribution of the Classical Harmonic Oscillator in Zero-Point RadiationWayne Cheng-Wei Huang, Herman Batelaan · 2013 · PaperPublished and peer-reviewed
- STM-D-0536Contrasting Classical and Quantum Vacuum States in Non-Inertial FramesTimothy H. Boyer · 2012 · PaperPublished and peer-reviewed
- STM-D-0556Stochastic Interpretation of Quantum Mechanics Assuming That Vacuum Fields Are RealEmilio Santos · 2022 · PaperPublished and peer-reviewed
- STM-D-0557The PVLAS experiment: A 25 year effort to measure vacuum magnetic birefringenceA. Ejlli, F. Della Valle, U. Gastaldi · 2020 · PaperPublished and peer-reviewed
- STM-D-0567Sub-Quantum Thermodynamics as a Basis of Emergent Quantum MechanicsGerhard Grössing · 2010 · PaperPublished and peer-reviewed
- STM-D-0569Stochastic Electrodynamics: The Closest Classical Approximation to Quantum TheoryTimothy H. Boyer · 2019 · PaperPublished and peer-reviewed
- STM-D-0589Zeta Functions and the Cosmos—A Basic Brief ReviewEmilio Elizalde · 2020 · PaperPublished and peer-reviewed
- STM-D-0590Time-Domain Perspective on Quantum Fields: Role of IndistinguishabilityGabriel Demontigny, Patrick Cusson, Andrei Rasputnyi · 2026 · TalkOn the bench now
- STM-D-0601Thermal noise-limited beam balance as prototype of the Archimedes vacuum weight experiment and B-L dark photon searchAnnalisa Allocca, Saverio Avino, Enrico Calloni · 2024 · PaperOn the bench now
- STM-D-0617The classical linear oscillator in classical electrodynamics with classical zero-point radiationTimothy H. Boyer · 2026 · PaperPublished and peer-reviewed
- STM-D-0618Shearing the vacuum - quantum frictionJ B Pendry · 1997 · PaperPublished and peer-reviewed
- STM-D-0630Realizing a rapidly switched Unruh-DeWitt detector through electro-optic sampling of the electromagnetic vacuumSho Onoe, Thiago L. M. Guedes, Andrey S. Moskalenko · 2022 · PaperPublished and peer-reviewed
- STM-D-0640Preludes to dark energy: Zero-point energy and vacuum speculationsHelge Kragh · 2011 · PaperSettled physics
- STM-D-0644Near-field radiative heat transfer in many-body systemsS.-A. Biehs, R. Messina, P. S. Venkataram · 2021 · PaperPublished and peer-reviewed
- STM-D-0651The Young-Feynman two-slits experiment with single electrons: Build-up of the interference pattern and arrival-time distribution using a fast-readout pixel detectorStefano Frabboni, Alessandro Gabrielli, Gian Carlo Gazzadi · 2012 · PaperSettled physics
- STM-D-0659How the huge energy of quantum vacuum gravitates to drive the slow accelerating expansion of the UniverseQingdi Wang, Zhen Zhu, William G. Unruh · 2017 · PaperPublished and peer-reviewed
- STM-D-0660The Casimir Effect: Physical Manifestations of Zero-Point EnergyPeter W. Milonni · 2003 · ArticleSettled physics
- STM-D-0666Ground state of hydrogen as a zero-point-fluctuation-determined stateH. E. Puthoff · 1987 · PaperPublished and peer-reviewed
- STM-D-0672Testing Quantum Coherence in Stochastic Electrodynamics with Squeezed Schrödinger Cat StatesWayne Cheng-Wei Huang, Herman Batelaan · 2019 · PaperPublished and peer-reviewed
- STM-D-0694Quantum Mechanics as an Emergent Property of Ergodic Systems Embedded in the Zero-point Radiation FieldL. de la Peña, A. Valdés-Hernández, A. M. Cetto · 2009 · PaperPublished and peer-reviewed
- STM-D-0708Random electrodynamicsT. W. Marshall · 1963 · PaperPublished and peer-reviewed
- STM-D-0710The vacuum fluctuation theorem: Exact Schrödinger equation via nonequilibrium thermodynamicsGerhard Grössing · 2008 · PaperPublished and peer-reviewed
- STM-D-0722Subcycle tomography of quantum lightGeehyun Yang, Matthias Kizmann, Alfred Leitenstorfer · 2026 · PaperDesigned, not yet built
- STM-D-0726Random electrodynamics: The theory of classical electrodynamics with classical electromagnetic zero-point radiationTimothy H. Boyer · 1975 · PaperPublished and peer-reviewed
- STM-D-0747Macroscopic quantum electrodynamics in nonlocal and nonreciprocal mediaStefan Yoshi Buhmann, David T Butcher, Stefan Scheel · 2012 · PaperPublished and peer-reviewed
- STM-D-0748Zero-Point EnergyPeter W. Milonni · 2009 · ArticleSettled physics
- STM-D-0751Simulation of the hydrogen ground state in stochastic electrodynamicsTheo M. Nieuwenhuizen, Matthew T. P. Liska · 2015 · PaperPublished and peer-reviewed
- STM-D-0753Stochastic Electrodynamics: Renormalized Noise in the Hydrogen Ground-State ProblemTheo M. Nieuwenhuizen · 2020 · PaperPublished and peer-reviewed
- STM-D-0755Partner particles for moving mirror radiation and black hole evaporationM. Hotta, R. Schützhold, W. G. Unruh · 2015 · PaperPublished and peer-reviewed
- STM-D-0765First results from the new PVLAS apparatus: A new limit on vacuum magnetic birefringenceF. Della Valle, E. Milotti, A. Ejlli · 2014 · PaperPublished and peer-reviewed
- STM-D-0766Why spontaneous emission?P. W. Milonni · 1984 · PaperSettled physics
- STM-D-0773Computer modeling of resonance scattering in the time domainR. C. Greenhow · 1994 · PaperSettled physics
- STM-D-0783Stochastic electrodynamics and the interpretation of quantum theoryEmilio Santos · 2012 · PaperPublished and peer-reviewed
- STM-D-0789The Planck Distribution, a Necessary Consequence of the Fluctuating Zero-Point FieldLuis de la Peña, Ana María Cetto, Andrea Valdés-Hernández · 2015 · PaperPublished and peer-reviewed
- STM-D-0795On the analogy between stochastic electrodynamics and nonrelativistic quantum electrodynamicsEmilio Santos · 2022 · PaperPublished and peer-reviewed
- STM-D-0799Stochastic Electrodynamics: Lessons from Regularizing the Harmonic OscillatorTheodorus Maria Nieuwenhuizen · 2019 · PaperPublished and peer-reviewed
- STM-D-0809The Emerging Quantum: The Physics Behind Quantum MechanicsLuis de la Peña, Ana María Cetto, Andrea Valdés-Hernández · 2015 · BookPublished and peer-reviewed
- STM-D-0821Kerr-induced non-Gaussianity of a bright ultrafast quantum stateAndrei Rasputnyi, Ilya Karuseichyk, Gerd Leuchs · 2026 · PaperPublished and peer-reviewed
- STM-D-0826Superradiant Topological Peierls Insulator inside an Optical CavityFarokh Mivehvar, Helmut Ritsch, Francesco Piazza · 2017 · PaperPublished and peer-reviewed
- STM-D-0827Linear stochastic electrodynamics: Looking for the physics behind quantum theoryLuis de la Peña, Ana María Cetto · 1999 · PaperPublished and peer-reviewed
- STM-D-0830Radiation reaction and vacuum fluctuations in spontaneous emissionPeter W. Milonni, Wallace Arden Smith · 1975 · PaperSettled physics
- STM-D-0836Reflection and transmission in nonlocal susceptibility models with multiple resonancesR. J. Churchill, T. G. Philbin · 2017 · PaperPublished and peer-reviewed
- STM-D-0837Stochastic Electric Dipole Oscillator in a Nonuniform, Static Electric Field, used to Derive the Classical Electromagnetic Zero-point Radiation SpectrumDaniel C. Cole · 2026 · PaperPublished and peer-reviewed
- STM-D-0852Quantum Theory and Linear Stochastic ElectrodynamicsLuis de la Peña, Ana María Cetto · 2001 · PaperPublished and peer-reviewed
- STM-D-0853Is zero-point energy physical? A toy model for Casimir-like effectHrvoje Nikolić · 2017 · PaperPublished and peer-reviewed
- STM-D-0869Stochastic optics: A local realistic analysis of optical tests of Bell inequalitiesTrevor W. Marshall, Emilio Santos · 1989 · PaperPublished and peer-reviewed
- STM-D-0874The PVLAS experiment: measuring vacuum magnetic birefringence and dichroism with a birefringent Fabry–Perot cavityFederico Della Valle, Aldo Ejlli, Ugo Gastaldi · 2016 · PaperPublished and peer-reviewed
- STM-D-0879Quantum Mechanical Ground State of Hydrogen Obtained from Classical ElectrodynamicsDaniel C. Cole, Yi Zou · 2003 · PaperPublished and peer-reviewed
- STM-D-0886Two New Methods in Stochastic Electrodynamics for Analyzing the Simple Harmonic Oscillator and Possible Extension to HydrogenDaniel C. Cole · 2023 · PaperPublished and peer-reviewed
- STM-D-0902The Archimedes experimentEnrico Calloni, S. Caprara, Martina De Laurentis · 2015 · PaperOn the bench now
- STM-D-0909On the Stability of Classical Orbits of the Hydrogen Ground State in Stochastic ElectrodynamicsTheodorus M. Nieuwenhuizen · 2016 · PaperPublished and peer-reviewed
- STM-D-0928Exact Quantum Electrodynamics of Radiative Photonic EnvironmentsBen Yuen, Angela Demetriadou · 2024 · PaperPublished and peer-reviewed
- STM-D-0943Advances in QED with intense background fieldsA. Fedotov, A. Ilderton, F. Karbstein · 2023 · PaperPublished and peer-reviewed
- STM-D-0960Extremely high-intensity laser interactions with fundamental quantum systemsAntonino Di Piazza, Carsten Müller, Karen Z. Hatsagortsyan · 2012 · PaperPublished and peer-reviewed
- STM-D-0969SU(2) and SU(3) Yang–Mills thermodynamics and some implicationsRalf Hofmann · 2006 · PaperPublished and peer-reviewed
- STM-D-0971Measurement of the positive muon anomalous magnetic moment to 127 ppbMuon g-2 Collaboration · 2025 · PaperSettled physics
- STM-D-0981Quantum atmospherics for materials diagnosisQing-Dong Jiang, Frank Wilczek · 2019 · PaperPublished and peer-reviewed
- STM-D-0983The transactional interpretation of quantum mechanicsJohn G. Cramer · 2001 · PaperPublished and peer-reviewed
- STM-D-0986Quantum Field Theory Under the Influence of External Conditions (QFEXT09)Kimball A. Milton, Michael Bordag · 2010 · BookPublished and peer-reviewed
- STM-D-1004Vacuum structure of a modified MIT bagRalf Hofmann, M. Schumann, Thomas Gutsche · 2000 · PaperPublished and peer-reviewed
- STM-D-1033Thermal Ground State and Nonthermal ProbesThierry Grandou, Ralf Hofmann · 2015 · PaperPublished and peer-reviewed
- STM-D-1060On the carrier of inertiaPatrick Grahn, Arto Annila, Erkki Kolehmainen · 2018 · PaperPublished and peer-reviewed
- STM-D-1070Quantum ground states as equilibrium particle–vacuum interaction statesHarold E. Puthoff · 2015 · PaperPublished and peer-reviewed
- STM-D-1082The localized quantum vacuum fieldDaniela Dragoman · 2008 · PaperPublished and peer-reviewed
- STM-D-1084Charged Lepton Spectra from Hot-Spot EvaporationJulian Moosmann, Ralf Hofmann · 2012 · PaperPublished and peer-reviewed
- STM-D-1087Quantum and classical statistics of the electromagnetic zero-point fieldMichael Ibison, Bernhard Haisch · 1996 · PaperPublished and peer-reviewed
- STM-D-1088Tunneling through Coulombic barriers: quantum control of nuclear fusionRajdeep Saha, Andreas Markmann, Victor S. Batista · 2012 · PaperPublished and peer-reviewed
- STM-D-1089Center-Vortex Loops with One Self-IntersectionJulian Moosmann, Ralf Hofmann · 2012 · PaperPublished and peer-reviewed
- STM-D-1109Nonperturbative approach to Yang–Mills thermodynamicsRalf Hofmann · 2005 · PaperPublished and peer-reviewed
04 Casimir physics and vacuum-force engineering
- STM-D-0020On the attraction between two perfectly conducting platesH. B. G. Casimir · 1948 · PaperSettled physics
- STM-D-0045Quantum vacuum energy extractionBernard Haisch, Garret Moddel, Jovion Corp · 2005 · PatentDesigned, not yet built
- STM-D-0048Precision measurement of the Casimir force (AFM)Mohideen, Roy · 1998 · PaperSettled physics
- STM-D-0049Fifty Years of the Dynamical Casimir EffectViktor Dodonov · 2020 · PaperSettled physics
- STM-D-0070Demonstration of the Casimir Force in the 0.6–6 μm RangeSteve K. Lamoreaux · 1997 · PaperSettled physics
- STM-D-0322Method for Creating a Rapidly Changing Energy Shell of Quantum Fluctuations About Masses for Acceleration Without Mass EjectionGlen A. Robertson · 2023 · PatentDesigned, not yet built
- STM-D-0326Cavity-enhanced superconductivity in the two-dimensional limit of NbSe2Hanxiang Zhang, Zexin Feng, I-Te Lu · 2026 · PaperPublished and peer-reviewed
- STM-D-0352Observation of the Dynamical Casimir Effect in a Superconducting CircuitC. M. Wilson, G. Johansson, A. Pourkabirian · 2011 · PaperSettled physics
- STM-D-0365The Casimir Effect and the Quantum VacuumRobert L. Jaffe · 2005 · PaperSettled physics
- STM-D-0418Casimir forces in the time domain: TheoryAlejandro W. Rodriguez, Alexander P. McCauley, John D. Joannopoulos · 2009 · PaperPublished and peer-reviewed
- STM-D-0419Advances in the Casimir EffectMichael Bordag, Galina L. Klimchitskaya, Umar Mohideen · 2009 · BookSettled physics
- STM-D-0421Casimir EffectPeter W. Milonni, Umar Mohideen · 2009 · ArticleSettled physics
- STM-D-0431Casimir repulsion with biased semiconductorsBenjamin Spreng, Calum Shelden, Tao Gong · 2024 · PaperDesigned, not yet built
- STM-D-0446Casimir forces across magnetic plasmas at nuclear separationsS. K. Panja, L. Inacio, S. Pal · 2025 · PaperPublished and peer-reviewed
- STM-D-0451Casimir cosmologyUlf Leonhardt · 2022 · PaperPublished and peer-reviewed
- STM-D-0461Casimir forces in relativistic metrology: fundamental physical tests and aerospace applicationsFabrizio Pinto · 2016 · PaperPublished and peer-reviewed
- STM-D-0462Enhanced repulsive Casimir forces between gold and thin magnetodielectric platesC. Shelden, B. Spreng, J. N. Munday · 2023 · PaperDesigned, not yet built
- STM-D-0468Casimir forces and non-Newtonian gravitationRoberto Onofrio · 2006 · PaperPublished and peer-reviewed
- STM-D-0470Contribution of Drifting Carriers to the Casimir-Lifshitz and Casimir-Polder Interactions With Semiconductor MaterialsDiego A. R. Dalvit, Steve K. Lamoreaux · 2008 · PaperPublished and peer-reviewed
- STM-D-0476Cavity-enhanced superconducting response in an underdoped cuprateAngela Montanaro, Vadim Plastovets, Nitesh Khatiwada · 2026 · PaperOn the bench now
- STM-D-0477Damped vacuum states of lightT G Philbin · 2016 · PaperPublished and peer-reviewed
- STM-D-0492Casimir Effect with Dielectric Matter in Salted Water and Implications at the Cell ScaleLarissa Inácio, Felipe S. S. Rosa, Astrid Lambrecht · 2026 · PaperPublished and peer-reviewed
- STM-D-0502Casimir Force Control Enabled by 3D NanostructuresCalum Shelden, Benjamin Spreng, Joseph L. Garrett · 2025 · PaperPublished and peer-reviewed
- STM-D-0506Evidence for vacuum-enhanced superconductivity in NbSe2Zheyan Wang, Gabriel Cardoso, Liu Yang · 2026 · PaperPublished and peer-reviewed
- STM-D-0512Dynamical Casimir effect in a Josephson metamaterialPasi Lähteenmäki, G. S. Paraoanu, Juha Hassel · 2013 · PaperSettled physics
- STM-D-0517Bose–Einstein condensation versus Dicke–Hepp–Lieb transition in an optical cavityFrancesco Piazza, Philipp Strack, Wilhelm Zwerger · 2013 · PaperPublished and peer-reviewed
- STM-D-0528Dynamical Casimir Effect in a Superconducting Coplanar WaveguideJ. R. Johansson, G. Johansson, C. M. Wilson · 2009 · PaperPublished and peer-reviewed
- STM-D-0559Restrictions on negative energy density in flat spacetimeL. H. Ford, Thomas A. Roman · 1997 · PaperPublished and peer-reviewed
- STM-D-0566Unusual properties of conductive rectangular cavities in the zero point electromagnetic field: Resolving forward’s Casimir energy extraction cycle paradoxG. Jordan Maclay · 1999 · PaperPublished and peer-reviewed
- STM-D-0577Worldline numerics applied to custom Casimir geometry generates unanticipated intersection with Alcubierre warp metricHarold White, Jerry Vera, Arum Han · 2021 · PaperPublished and peer-reviewed
- STM-D-0593Measurement of the Casimir Force between Parallel Metallic SurfacesG. Bressi, G. Carugno, R. Onofrio · 2002 · PaperSettled physics
- STM-D-0594Exploring Superconductivity under Strong Coupling with the Vacuum Electromagnetic FieldAnoop Thomas, Eloïse Devaux, Kalaivanan Nagarajan · 2019 · PaperPublished and peer-reviewed
- STM-D-0611Tests of new physics from precise measurements of the Casimir pressure between two gold-coated platesR. S. Decca, D. López, E. Fischbach · 2007 · PaperSettled physics
- STM-D-0613The Planck Constant and the Origin of Mass Due to a Higher Order Casimir EffectC. Baumgärtel, M. Tajmar · 2018 · PaperPublished and peer-reviewed
- STM-D-0618Shearing the vacuum - quantum frictionJ B Pendry · 1997 · PaperPublished and peer-reviewed
- STM-D-0629Materials perspective on Casimir and van der Waals interactionsL. M. Woods, D. A. R. Dalvit, A. Tkatchenko · 2016 · PaperSettled physics
- STM-D-0643The Casimir force: background, experiments, and applicationsSteven K. Lamoreaux · 2005 · PaperSettled physics
- STM-D-0644Near-field radiative heat transfer in many-body systemsS.-A. Biehs, R. Messina, P. S. Venkataram · 2021 · PaperPublished and peer-reviewed
- STM-D-0646Observation of the thermal Casimir forceA. O. Sushkov, W. J. Kim, D. A. R. Dalvit · 2011 · PaperPublished and peer-reviewed
- STM-D-0647Quantum Mechanical Actuation of Microelectromechanical Systems by the Casimir ForceH. B. Chan, V. A. Aksyuk, R. N. Kleiman · 2001 · PaperSettled physics
- STM-D-0660The Casimir Effect: Physical Manifestations of Zero-Point EnergyPeter W. Milonni · 2003 · ArticleSettled physics
- STM-D-0665Recent developments on the Casimir torqueBenjamin Spreng, Tao Gong, Jeremy N. Munday · 2022 · ArticlePublished and peer-reviewed
- STM-D-0668Vacuum Torque Without Anisotropy: Switchable Casimir Torque Between AltermagnetsZixuan Dai, Qing-Dong Jiang · 2026 · PaperDesigned, not yet built
- STM-D-0669Measurement of non-monotonic Casimir forces between silicon nanostructuresL. Tang, M. Wang, C. Y. Ng · 2017 · PaperPublished and peer-reviewed
- STM-D-0688The Casimir effect: recent controversies and progressKimball A. Milton · 2004 · PaperSettled physics
- STM-D-0690Lifshitz theory of the cosmological constantUlf Leonhardt · 2019 · PaperPublished and peer-reviewed
- STM-D-0702Supersymmetry Breaking Casimir Warp DriveRichard K. Obousy, Gerald B. Cleaver · 2007 · PaperPublished and peer-reviewed
- STM-D-0703The Casimir force between real materials: Experiment and theoryG. L. Klimchitskaya, U. Mohideen, V. M. Mostepanenko · 2009 · PaperSettled physics
- STM-D-0704Thermal effect in the Casimir force for graphene and graphene-coated substrates: Impact of nonzero mass gap and chemical potentialG. Bimonte, G. L. Klimchitskaya, V. M. Mostepanenko · 2017 · PaperDesigned, not yet built
- STM-D-0714Membrane actuation by Casimir force manipulationFabrizio Pinto · 2008 · PaperOn the bench now
- STM-D-0721Traversable wormholes induced by stress energy conservation: combining Casimir energy with a scalar fieldRemo Garattini, Athanasios G. Tzikas · 2024 · PaperPublished and peer-reviewed
- STM-D-0743Thermal Effects in the Casimir Torque between Birefringent PlatesBenjamin Spreng, Jeremy N. Munday · 2025 · PaperPublished and peer-reviewed
- STM-D-0744High-Temperature Plasma in Casimir PhysicsSuman Kumar Panja, Mathias Boström · 2026 · PaperPublished and peer-reviewed
- STM-D-0747Macroscopic quantum electrodynamics in nonlocal and nonreciprocal mediaStefan Yoshi Buhmann, David T Butcher, Stefan Scheel · 2012 · PaperPublished and peer-reviewed
- STM-D-0749Scattering theory of the screened Casimir interaction in electrolytesPaulo A. Maia Neto, Felipe S. S. Rosa, Luis B. Pires · 2019 · PaperPublished and peer-reviewed
- STM-D-0768Prediction of a measurable sign change in the Casimir force using a magnetic fluidLong Ma, Larissa Inácio, Dai-Nam Le · 2026 · PaperPublished and peer-reviewed
- STM-D-0770Sharp Fano resonances in THz metamaterialsRanjan Singh, Ibraheem A. I. Al-Naib, Martin Koch · 2011 · PaperPublished and peer-reviewed
- STM-D-0771Macroscopic Quantum Electrodynamics and DualityStefan Yoshi Buhmann, Stefan Scheel · 2009 · PaperPublished and peer-reviewed
- STM-D-0785Self-assembly of metallic MEMS using Casimir forces: Fabrication, simulation and characterizationH. Hillmer, B. Elsaka, P. Kästner · 2025 · PaperPublished and peer-reviewed
- STM-D-0807Measured long-range repulsive Casimir–Lifshitz forcesJ. N. Munday, Federico Capasso, V. Adrian Parsegian · 2009 · PaperPublished and peer-reviewed
- STM-D-0826Superradiant Topological Peierls Insulator inside an Optical CavityFarokh Mivehvar, Helmut Ritsch, Francesco Piazza · 2017 · PaperPublished and peer-reviewed
- STM-D-0832Universal Casimir interactions in the sphere–sphere geometryTanja Schoger, Benjamin Spreng, Gert-Ludwig Ingold · 2022 · PaperPublished and peer-reviewed
- STM-D-0836Reflection and transmission in nonlocal susceptibility models with multiple resonancesR. J. Churchill, T. G. Philbin · 2017 · PaperPublished and peer-reviewed
- STM-D-0838Traversable wormholes in four dimensionsJuan Maldacena, Alexey Milekhin, Fedor Popov · 2018 · PaperPublished and peer-reviewed
- STM-D-0847The Casimir effect in microstructured geometriesAlejandro W. Rodriguez, Federico Capasso, Steven G. Johnson · 2011 · PaperPublished and peer-reviewed
- STM-D-0850Universal Casimir attraction between filaments at the cell scaleBenjamin Spreng, Hélène Berthoumieux, Astrid Lambrecht · 2024 · PaperPublished and peer-reviewed
- STM-D-0853Is zero-point energy physical? A toy model for Casimir-like effectHrvoje Nikolić · 2017 · PaperPublished and peer-reviewed
- STM-D-0865Finite difference computation of Casimir forcesFabrizio Pinto · 2016 · PaperPublished and peer-reviewed
- STM-D-0868The “friction” of vacuum, and other fluctuation-induced forcesMehran Kardar, Ramin Golestanian · 1999 · PaperPublished and peer-reviewed
- STM-D-0881The Casimir effect within scattering theoryAstrid Lambrecht, Paulo A Maia Neto, Serge Reynaud · 2006 · PaperSettled physics
- STM-D-0893The Casimir effect and its role in nanotechnology applicationsFabrizio Pinto · 2018 · PaperPublished and peer-reviewed
- STM-D-0902The Archimedes experimentEnrico Calloni, S. Caprara, Martina De Laurentis · 2015 · PaperOn the bench now
- STM-D-0913Opportunities and challenges involving repulsive Casimir forces in nanotechnologyCalum Shelden, Benjamin Spreng, Jeremy N. Munday · 2024 · ArticlePublished and peer-reviewed
- STM-D-0928Exact Quantum Electrodynamics of Radiative Photonic EnvironmentsBen Yuen, Angela Demetriadou · 2024 · PaperPublished and peer-reviewed
- STM-D-0981Quantum atmospherics for materials diagnosisQing-Dong Jiang, Frank Wilczek · 2019 · PaperPublished and peer-reviewed
- STM-D-0984Investigation into Compactified Dimensions: Casimir Energies and Phenomenological AspectsRichard K. Obousy · 2009 · PaperPublished and peer-reviewed
- STM-D-0986Quantum Field Theory Under the Influence of External Conditions (QFEXT09)Kimball A. Milton, Michael Bordag · 2010 · BookPublished and peer-reviewed
- STM-D-0995Casimir force at a knife’s edgeNoah Graham, Alexander Shpunt, Thorsten Emig · 2010 · PaperPublished and peer-reviewed
- STM-D-1004Vacuum structure of a modified MIT bagRalf Hofmann, M. Schumann, Thomas Gutsche · 2000 · PaperPublished and peer-reviewed
- STM-D-1007Vacuum Stress between Conducting Plates: An Image SolutionLowell S. Brown, G. Jordan Maclay · 1969 · PaperSettled physics
- STM-D-1009Casimir Energy and Brane StabilityRichard Obousy, Gerald Cleaver · 2008 · PaperPublished and peer-reviewed
- STM-D-1030Extracting electrical energy from the vacuum by cohesion of charged foliated conductorsRobert L. Forward · 1984 · PaperDesigned, not yet built
- STM-D-1063Focusing vacuum fluctuations. IIL. H. Ford, N. F. Svaiter · 2002 · PaperPublished and peer-reviewed
- STM-D-1112Chiral Casimir forces: Repulsive, enhanced, tunableQing-Dong Jiang, Frank Wilczek · 2019 · PaperDesigned, not yet built
- STM-D-1114Measurements of attractive forces between flat platesM. J. Sparnaay · 1958 · PaperSettled physics
05 Energy from the vacuum
- STM-D-0004Energy conversion using high charge densityKenneth R. Shoulders, Jupiter Toy Co · 1989 · PatentWhat to watch
- STM-D-0009Kenneth R. Shoulders patent familyKenneth R. Shoulders · 1991 · PatentWhat to watch
- STM-D-0013Motionless electromagnetic generatorStephen L. Patrick, Thomas E. Bearden, James C. Hayes · 2000 · PatentWhat to watch
- STM-D-0019Casimir Inc. — NSF SBIR Phase I and SpaceWERX STTR Phase I awardsCasimir, Inc. · 2024 · ReportOn the bench now
- STM-D-0037Zero-Point Energy: Capturing EvanescenceGarret Moddel · 2022 · PaperOn the bench now
- STM-D-0045Quantum vacuum energy extractionBernard Haisch, Garret Moddel, Jovion Corp · 2005 · PatentDesigned, not yet built
- STM-D-0049Fifty Years of the Dynamical Casimir EffectViktor Dodonov · 2020 · PaperSettled physics
- STM-D-0080Quantum noise power devicesGarret Moddel, The Regents of the University of Colorado · 2020 · PatentOn the bench now
- STM-D-0081Spintronic generatorSearl Magnetronix, LLC · 2014 · PatentDesigned, not yet built
- STM-D-0185Method of and apparatus for production and manipulation of high density chargeKenneth R. Shoulders · 1991 · PatentDesigned, not yet built
- STM-D-0193The Shoulders EVO patent family (high charge density energy conversion)Kenneth R. Shoulders, Jupiter Toy Co · 1992 · PatentWhat to watch
- STM-D-0308Quantum Energy Teleportation: An Introductory ReviewMasahiro Hotta · 2011 · PaperPublished and peer-reviewed
- STM-D-0336DIRD Ultracapacitors as Energy and Power Storage Devices for Commercial and Military ApplicationsDIA / AAWSAP contractor · 2010 · ReportSettled physics
- STM-D-0352Observation of the Dynamical Casimir Effect in a Superconducting CircuitC. M. Wilson, G. Johansson, A. Pourkabirian · 2011 · PaperSettled physics
- STM-D-0361Extraction of Zero-Point Energy from the Vacuum: Assessment of Stochastic Electrodynamics-Based Approach as Compared to Other MethodsGarret Moddel, Olga Dmitriyeva · 2019 · PaperPublished and peer-reviewed
- STM-D-0388Experimental Activation of Strong Local Passive States with Quantum InformationNayeli A. Rodríguez-Briones, Hemant Katiyar, Eduardo Martín-Martínez · 2023 · PaperPublished and peer-reviewed
- STM-D-0418Casimir forces in the time domain: TheoryAlejandro W. Rodriguez, Alexander P. McCauley, John D. Joannopoulos · 2009 · PaperPublished and peer-reviewed
- STM-D-0450Demonstration of Quantum Energy Teleportation on Superconducting Quantum HardwareKazuki Ikeda · 2023 · PaperPublished and peer-reviewed
- STM-D-0494Energy Considerations of Classical Electromagnetic Zero-Point Radiation and a Specific Probability Calculation in Stochastic ElectrodynamicsDaniel C. Cole · 2019 · PaperPublished and peer-reviewed
- STM-D-0496Energy and thermodynamic considerations involving electromagnetic zero-point radiationDaniel C. Cole · 1999 · PaperPublished and peer-reviewed
- STM-D-0512Dynamical Casimir effect in a Josephson metamaterialPasi Lähteenmäki, G. S. Paraoanu, Juha Hassel · 2013 · PaperSettled physics
- STM-D-0528Dynamical Casimir Effect in a Superconducting Coplanar WaveguideJ. R. Johansson, G. Johansson, C. M. Wilson · 2009 · PaperPublished and peer-reviewed
- STM-D-0566Unusual properties of conductive rectangular cavities in the zero point electromagnetic field: Resolving forward’s Casimir energy extraction cycle paradoxG. Jordan Maclay · 1999 · PaperPublished and peer-reviewed
- STM-D-0610Quantum energy teleportation without a limit of distanceMasahiro Hotta, Jiro Matsumoto, Go Yusa · 2014 · PaperPublished and peer-reviewed
- STM-D-0647Quantum Mechanical Actuation of Microelectromechanical Systems by the Casimir ForceH. B. Chan, V. A. Aksyuk, R. N. Kleiman · 2001 · PaperSettled physics
- STM-D-0654Fundamental Limitations to Local Energy Extraction in Quantum SystemsÁlvaro M. Alhambra, Georgios Styliaris, Nayeli A. Rodríguez-Briones · 2019 · PaperPublished and peer-reviewed
- STM-D-0662Quantum Energy Teleportation in Spin Chain SystemsMasahiro Hotta · 2008 · PaperPublished and peer-reviewed
- STM-D-0714Membrane actuation by Casimir force manipulationFabrizio Pinto · 2008 · PaperOn the bench now
- STM-D-0731Fluctuation-induced current from freestanding grapheneP. M. Thibado, P. Kumar, Surendra Singh · 2020 · PaperPublished and peer-reviewed
- STM-D-0788Spectrum Analysis of Thermally Driven Curvature Inversion in Strained Graphene Ripples for Energy Conversion Applications via Molecular DynamicsJames M. Mangum, Md R. Kabir, Tamzeed B. Amin · 2025 · PaperPublished and peer-reviewed
- STM-D-0835Graphene ripples as a realization of a two-dimensional Ising model: A scanning tunneling microscope studyJ. K. Schoelz, P. Xu, V. Meunier · 2015 · PaperPublished and peer-reviewed
- STM-D-0856Extracting and Using Electromagnetic Energy from the Active VacuumThomas E. Bearden · 2003 · PaperWhat to watch
- STM-D-0875Extracting energy and heat from the vacuumDaniel C. Cole, Harold E. Puthoff · 1993 · PaperPublished and peer-reviewed
- STM-D-0877Quantum measurement information as a key to energy extraction from local vacuumsMasahiro Hotta · 2008 · PaperPublished and peer-reviewed
- STM-D-0985The Morningstar Energy BoxPaul Murad, Morgan Boardman, John Brandenburg · 2012 · PaperOn the bench now
- STM-D-1030Extracting electrical energy from the vacuum by cohesion of charged foliated conductorsRobert L. Forward · 1984 · PaperDesigned, not yet built
- STM-D-1042Exceeding the maximum classical energy density in fully charged quantum batteriesMasahiro Hotta, Kazuki Ikeda · 2025 · PaperPublished and peer-reviewed
- STM-D-1043Human outer solar system exploration via Q-Thruster technologyB. Kent Joosten, Harold G. White · 2015 · PaperDesigned, not yet built
- STM-D-1063Focusing vacuum fluctuations. IIL. H. Ford, N. F. Svaiter · 2002 · PaperPublished and peer-reviewed
06 The vacuum at cosmic scale
- STM-D-0284DIRD Warp Drive Dark energy and the Manipulation of Extra DimensionsRichard K. Obousy, Eric W. Davis, DIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0397DESI DR2 Results II: Measurements of Baryon Acoustic Oscillations and Cosmological ConstraintsDESI Collaboration, M. Abdul Karim and 185 co-authors · 2025 · PaperWhat to watch
- STM-D-0409Dark matter superfluidity and galactic dynamicsLasha Berezhiani, Justin Khoury · 2016 · PaperPublished and peer-reviewed
- STM-D-0417Assessing observational constraints on dark energyDavid Shlivko, Paul J. Steinhardt · 2024 · PaperPublished and peer-reviewed
- STM-D-0437Everything You Always Wanted To Know About The Cosmological Constant Problem (But Were Afraid To Ask)Jérôme Martin · 2012 · PaperPublished and peer-reviewed
- STM-D-0443Emergent Gravity and the Dark UniverseErik P. Verlinde · 2017 · PaperPublished and peer-reviewed
- STM-D-0451Casimir cosmologyUlf Leonhardt · 2022 · PaperPublished and peer-reviewed
- STM-D-0471Anthropic Bound on the Cosmological ConstantSteven Weinberg · 1987 · PaperWhat to watch
- STM-D-0584The Cosmological Constant is BackLawrence M. Krauss, Michael S. Turner · 1995 · PaperSettled physics
- STM-D-0589Zeta Functions and the Cosmos—A Basic Brief ReviewEmilio Elizalde · 2020 · PaperPublished and peer-reviewed
- STM-D-0596The Return of a Static Universe and the End of CosmologyLawrence M. Krauss, Robert J. Scherrer · 2007 · PaperPublished and peer-reviewed
- STM-D-0601Thermal noise-limited beam balance as prototype of the Archimedes vacuum weight experiment and B-L dark photon searchAnnalisa Allocca, Saverio Avino, Enrico Calloni · 2024 · PaperOn the bench now
- STM-D-0615Wormholes supported by a phantom energySergey V. Sushkov · 2005 · PaperPublished and peer-reviewed
- STM-D-0619Theory of dark matter superfluidityLasha Berezhiani, Justin Khoury · 2015 · PaperPublished and peer-reviewed
- STM-D-0631The Cosmological ConstantSean M. Carroll · 2001 · PaperSettled physics
- STM-D-0640Preludes to dark energy: Zero-point energy and vacuum speculationsHelge Kragh · 2011 · PaperSettled physics
- STM-D-0642Transition from Inflation to Dark Energy in Superfluid Vacuum TheoryKonstantin G. Zloshchastiev · 2025 · PaperPublished and peer-reviewed
- STM-D-0658The cosmological constant problemSteven Weinberg · 1989 · PaperWhat to watch
- STM-D-0659How the huge energy of quantum vacuum gravitates to drive the slow accelerating expansion of the UniverseQingdi Wang, Zhen Zhu, William G. Unruh · 2017 · PaperPublished and peer-reviewed
- STM-D-0663The Cosmological Constant Problem: Why it's hard to get Dark Energy from Micro-physicsC. P. Burgess · 2013 · PaperWhat to watch
- STM-D-0681Rapidly Descending Dark Energy and the End of Cosmic ExpansionCosmin Andrei, Anna Ijjas, Paul J. Steinhardt · 2022 · PaperWhat to watch
- STM-D-0684Quantum noise in time-dependent media and cosmic expansionZiv Landau, Ulf Leonhardt · 2024 · PaperPublished and peer-reviewed
- STM-D-0690Lifshitz theory of the cosmological constantUlf Leonhardt · 2019 · PaperPublished and peer-reviewed
- STM-D-0700What do we really know about Dark Energy?Ruth Durrer · 2011 · PaperWhat to watch
- STM-D-0729The Cosmological Constant Problem, Dark Energy, and the Landscape of String TheoryRaphael Bousso · 2012 · PaperWhat to watch
- STM-D-0762Yoga Dark Energy: Natural Relaxation and Other Dark Implications of a Supersymmetric Gravity SectorC. P. Burgess, Danielle Dineen, F. Quevedo · 2021 · PaperWhat to watch
- STM-D-0767Prospects for probing the dark energy via supernova distance measurementsDragan Huterer, Michael S. Turner · 1998 · PaperPublished and peer-reviewed
- STM-D-0777My Personal History With the Quantum Theory of de Sitter SpaceTom Banks · 2023 · PaperWhat to watch
- STM-D-0811The quantum vacuum and the cosmological constant problemS.E. Rugh, H. Zinkernagel · 2002 · PaperWhat to watch
- STM-D-0812Observational Evidence from Supernovae for an Accelerating Universe and a Cosmological ConstantAdam G. Riess, Alexei V. Filippenko, Peter Challis · 1998 · PaperSettled physics
- STM-D-0822Sequestering the Standard Model Vacuum EnergyNemanja Kaloper, Antonio Padilla · 2013 · PaperPublished and peer-reviewed
- STM-D-0858TASI Lectures on the Cosmological ConstantRaphael Bousso · 2007 · PaperPublished and peer-reviewed
- STM-D-0861Non-velocity Redshifts and Photon–Photon InteractionsJean-Claude Pecker, A. P. Roberts, Jean-Pierre Vigier · 1972 · PaperWhat to watch
- STM-D-0867The Cosmological Constant Problem: An Accessible IntroductionAli Kaya, Adam Lahey · 2026 · PaperPublished and peer-reviewed
- STM-D-0884Vacuum zero-point field pressure instability in astrophysical plasmas and the formation of cosmic voidsAlfonso Rueda, Bernhard Haisch, Daniel C. Cole · 1995 · PaperPublished and peer-reviewed
- STM-D-0907Lectures on the Cosmological Constant ProblemAntonio Padilla · 2015 · PaperPublished and peer-reviewed
- STM-D-0932On de Sitter radiation via quantum tunnelingGrigory E. Volovik · 2009 · PaperPublished and peer-reviewed
- STM-D-0962A ZPF-Mediated Cosmological Origin of Electron InertiaMichael Ibison · 2002 · PaperPublished and peer-reviewed
- STM-D-0963String cosmology backgrounds from classical string geometryHeliudson Bernardo, Robert Brandenberger, Guilherme Franzmann · 2021 · PaperPublished and peer-reviewed
- STM-D-0984Investigation into Compactified Dimensions: Casimir Energies and Phenomenological AspectsRichard K. Obousy · 2009 · PaperPublished and peer-reviewed
- STM-D-0991Deconstructing the Interiors of Compact StarsArmen Sedrakian · 2012 · PaperPublished and peer-reviewed
- STM-D-1035An Uneven Vacuum Energy Fluid as Λ, Dark Matter, MOND and LensHongSheng Zhao · 2008 · PaperPublished and peer-reviewed
- STM-D-1037Energy extraction via magnetic reconnection in magnetized black holesShao-Jun Zhang · 2024 · PaperPublished and peer-reviewed
- STM-D-1058Axial Anomaly in Galaxies and the Dark UniverseJanning Meinert, Ralf Hofmann · 2021 · PaperPublished and peer-reviewed
- STM-D-1082The localized quantum vacuum fieldDaniela Dragoman · 2008 · PaperPublished and peer-reviewed
- STM-D-1090Physics of the Plasma UniverseAnthony L. Peratt · 1992 · BookPublished and peer-reviewed
07 The vacuum as a quantum fluid
- STM-D-0041The Universe in a Helium DropletGrigory Volovik · 2003 · BookPublished and peer-reviewed
- STM-D-0052Analogue GravityCarlos Barceló, Stefano Liberati, Matt Visser · 2011 · PaperPublished and peer-reviewed
- STM-D-0058Vacuum quantum fluctuations in curved space and the theory of gravitationAndrei D. Sakharov · 1967 · PaperPublished and peer-reviewed
- STM-D-0279Logarithmic nonlinearity in theories of quantum gravity: Origin of time and observational consequencesKonstantin G. Zloshchastiev · 2009 · PaperPublished and peer-reviewed
- STM-D-0345Observation of quantum Hawking radiation and its entanglement in an analogue black holeJeff Steinhauer · 2016 · PaperPublished and peer-reviewed
- STM-D-0409Dark matter superfluidity and galactic dynamicsLasha Berezhiani, Justin Khoury · 2016 · PaperPublished and peer-reviewed
- STM-D-0422Analogue gravity from Bose-Einstein condensatesCarlos Barceló, S Liberati, Matt Visser · 2001 · PaperPublished and peer-reviewed
- STM-D-0465Comment on “Hawking Radiation from Ultrashort Laser Pulse Filaments”Ralf Schützhold, William G. Unruh · 2011 · PaperWhat to watch
- STM-D-0488Analogue gravity (2026 edition)Carlos Barceló, Stefano Liberati, Matt Visser · 2026 · PaperPublished and peer-reviewed
- STM-D-0495Black hole lasers in Bose–Einstein condensatesS Finazzi, R Parentani · 2010 · PaperPublished and peer-reviewed
- STM-D-0498Backreaction of stimulated Hawking radiation in an optical analogueLorenzo M. Procopio, Raul Aguero-Santacruz, David Bermudez · 2026 · PaperPublished and peer-reviewed
- STM-D-0517Bose–Einstein condensation versus Dicke–Hepp–Lieb transition in an optical cavityFrancesco Piazza, Philipp Strack, Wilhelm Zwerger · 2013 · PaperPublished and peer-reviewed
- STM-D-0530Experimental Black-Hole Evaporation?William G. Unruh · 1981 · PaperSettled physics
- STM-D-0536Contrasting Classical and Quantum Vacuum States in Non-Inertial FramesTimothy H. Boyer · 2012 · PaperPublished and peer-reviewed
- STM-D-0539Einstein's equations in electromagnetic mediaEren Erberk Erkul, Ulf Leonhardt · 2026 · PaperPublished and peer-reviewed
- STM-D-0551Numerical observation of Hawking radiation from acoustic black holes in atomic Bose–Einstein condensatesIacopo Carusotto, Serena Fagnocchi, Alessio Recati · 2008 · PaperPublished and peer-reviewed
- STM-D-0555Vortex formation in neutron-irradiated superfluid 3He as an analogue of cosmological defect formationV. M. H. Ruutu, V. B. Eltsov, A. J. Gill · 1996 · PaperPublished and peer-reviewed
- STM-D-0567Sub-Quantum Thermodynamics as a Basis of Emergent Quantum MechanicsGerhard Grössing · 2010 · PaperPublished and peer-reviewed
- STM-D-0619Theory of dark matter superfluidityLasha Berezhiani, Justin Khoury · 2015 · PaperPublished and peer-reviewed
- STM-D-0628Some theoretical aspects of observation of acceleration induced thermalityYefim S. Levin · 2025 · PaperWhat to watch
- STM-D-0630Realizing a rapidly switched Unruh-DeWitt detector through electro-optic sampling of the electromagnetic vacuumSho Onoe, Thiago L. M. Guedes, Andrey S. Moskalenko · 2022 · PaperPublished and peer-reviewed
- STM-D-0639Quantized vortices in superfluid 3HeM. M. Salomaa, G. E. Volovik · 1987 · PaperPublished and peer-reviewed
- STM-D-0642Transition from Inflation to Dark Energy in Superfluid Vacuum TheoryKonstantin G. Zloshchastiev · 2025 · PaperPublished and peer-reviewed
- STM-D-0680Hawking Radiation from Ultrashort Laser Pulse FilamentsF. Belgiorno, S. L. Cacciatori, M. Clerici · 2010 · PaperPublished and peer-reviewed
- STM-D-0684Quantum noise in time-dependent media and cosmic expansionZiv Landau, Ulf Leonhardt · 2024 · PaperPublished and peer-reviewed
- STM-D-0742Observation of thermal Hawking radiation and its temperature in an analogue black holeJuan Ramón Muñoz de Nova, Katrine Golubkov, Victor I. Kolobov · 2019 · PaperPublished and peer-reviewed
- STM-D-0745Vacuum Cherenkov effect in logarithmic nonlinear quantum theoryKonstantin G. Zloshchastiev · 2011 · PaperPublished and peer-reviewed
- STM-D-0755Partner particles for moving mirror radiation and black hole evaporationM. Hotta, R. Schützhold, W. G. Unruh · 2015 · PaperPublished and peer-reviewed
- STM-D-0769Fiber-Optical Analog of the Event HorizonThomas G. Philbin, Chris Kuklewicz, Scott Robertson · 2008 · PaperPublished and peer-reviewed
- STM-D-0780Model of the Causal Interpretation of Quantum Theory in Terms of a Fluid with Irregular FluctuationsD. Bohm, J. P. Vigier · 1954 · PaperPublished and peer-reviewed
- STM-D-0791Observation of self-amplifying Hawking radiation in an analogue black-hole laserJeff Steinhauer · 2014 · PaperPublished and peer-reviewed
- STM-D-0819Observation of negative-frequency waves in a water tank: a classical analogue to the Hawking effect?Germain Rousseaux, Christian Mathis, Philippe Maïssa · 2008 · PaperPublished and peer-reviewed
- STM-D-0844Quantum tunneling and quasinormal modes in the spacetime of the Alcubierre warp driveKimet Jusufi, İzzet Sakallı, Ali Övgün · 2017 · PaperPublished and peer-reviewed
- STM-D-0889Measurement of Stimulated Hawking Emission in an Analogue SystemSilke Weinfurtner, Edmund W. Tedford, Matthew C. J. Penrice · 2011 · PaperPublished and peer-reviewed
- STM-D-0932On de Sitter radiation via quantum tunnelingGrigory E. Volovik · 2009 · PaperPublished and peer-reviewed
- STM-D-0978Dirac electrons in graphene-based quantum wires and quantum dotsN. M. R. Peres, J. N. B. Rodrigues, T. Stauber · 2008 · PaperPublished and peer-reviewed
- STM-D-0991Deconstructing the Interiors of Compact StarsArmen Sedrakian · 2012 · PaperPublished and peer-reviewed
- STM-D-1016An extended Navier-Stokes algorithm and the challenges of relativistic fluid dynamicsPaul Murad · 1999 · PaperDesigned, not yet built
- STM-D-1017Attosecond light-pulse-induced photoassociationPaula Rivière, Camilo Ruiz, Jan-Michael Rost · 2008 · PaperPublished and peer-reviewed
- STM-D-1035An Uneven Vacuum Energy Fluid as Λ, Dark Matter, MOND and LensHongSheng Zhao · 2008 · PaperPublished and peer-reviewed
- STM-D-1046Analytic Model for the Energy Spectrum of a Graphene Quantum Dot in a Perpendicular Magnetic FieldS. Schnez, K. Ensslin, M. Sigrist · 2008 · PaperPublished and peer-reviewed
- STM-D-1072Nonlinear two-level dynamics of quantum time crystalsS. Autti, P. J. Heikkinen, J. Nissinen · 2022 · PaperPublished and peer-reviewed
- STM-D-1093Transformation Optics and the Geometry of LightUlf Leonhardt, Thomas G. Philbin · 2008 · PaperPublished and peer-reviewed
08 Fusion machines: pinches, focus devices and inertial drivers
- STM-D-0050Plasma Compression Fusion DeviceSalvatore Pais, US Department of Navy · 2018 · PatentDesigned, not yet built
- STM-D-0076DIRD Aneutronic Fusion Propulsion IIDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0176Electric discharge device for producing interactions between nucleiPhilo T. Farnsworth, International Telephone and Telegraph Corporation · 1966 · PatentDesigned, not yet built
- STM-D-0351DIRD Aneutronic Fusion PropulsionDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0358DIRD Advanced Nuclear Propulsion for Manned Deep Space MissionsDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0359DIRD Inertial Electrostatic Confinement FusionDIA / AAWSAP contractor · 2010 · ReportOn the bench now
- STM-D-0384Dynamics and Density Measurements in a Small Plasma Focus of Tens-of-Joules-Emitting NeutronsAriel Tarifeño-Saldivia, Cristian Pavez, José Moreno · 2011 · PaperPublished and peer-reviewed
- STM-D-0434Century: Zap Energy’s 100-kW-Scale Repetitive Sheared-Flow-Stabilized Z-Pinch System with Liquid Metal CoolingMatthew C. Thompson, Vidya Nalajala, Brian C. Kelleher · 2025 · PaperOn the bench now
- STM-D-0440Direct observation of ion acceleration from a beam-driven wave in a magnetic fusion experimentR. M. Magee, A. Necas, R. Clary · 2019 · PaperPublished and peer-reviewed
- STM-D-0457Application of the relativistic electron beams originating in the discharges of plasma focus type for the combined laser-REB plasma heatingV. A. Gribkov · 1976 · PaperPublished and peer-reviewed
- STM-D-0507Effect of discrete wires on the implosion dynamics of wire array Z pinchesS. V. Lebedev, F. N. Beg, S. N. Bland · 2001 · PaperPublished and peer-reviewed
- STM-D-0516Equilibrium flow structures and scaling of implosion trajectories in wire array Z pinchesJ. P. Chittenden, S. V. Lebedev, B. V. Oliver · 2004 · PaperPublished and peer-reviewed
- STM-D-0522Experimental Demonstration of Fusion-Relevant Conditions in Magnetized Liner Inertial FusionM. R. Gomez, S. A. Slutz, A. B. Sefkow · 2014 · PaperPublished and peer-reviewed
- STM-D-0546Detection of High Tritium Activity on the Central Titanium Electrode of a Plasma Focus DeviceR. K. Rout, M. Srinivasan, A. Shyam · 1991 · PaperPublished and peer-reviewed
- STM-D-0552Focus Fusion: Overview of Progress Towards p-B11 Fusion with the Dense Plasma FocusEric J. Lerner, Syed M. Hassan, Ivana Karamitsos-Zivkovic · 2023 · PaperPublished and peer-reviewed
- STM-D-0564Imposed-dynamo current driveT.R. Jarboe, B.S. Victor, B.A. Nelson · 2012 · PaperPublished and peer-reviewed
- STM-D-0572The Plasma Focus—Numerical Experiments, Insights and ApplicationsS. Lee, S. H. Saw · 2017 · PaperPublished and peer-reviewed
- STM-D-0573Pinch evidence in a fast and small plasma focus of only tens of joulesPatricio Silva, Leopoldo Soto, Walter Kies · 2004 · PaperPublished and peer-reviewed
- STM-D-0578Magnetic Helicity, Spheromaks, Solar Corona Loops, and Astrophysical JetsPaul M. Bellan · 2017 · BookSettled physics
- STM-D-0582The Princeton Field-Reversed Configuration for Compact Nuclear Fusion Power PlantsChristopher Galea, Stephanie Thomas, Michael Paluszek · 2023 · PaperOn the bench now
- STM-D-0583Preliminary neutron experiments with the PF-1000 plasma-focus facilityM. Scholz, R. Miklaszewski, M. Paduch · 2002 · PaperPublished and peer-reviewed
- STM-D-0588Physical processes taking place in dense plasma focus devices at the interaction of hot plasma and fast ion streams with materials under testV A Gribkov · 2015 · PaperPublished and peer-reviewed
- STM-D-0609The Quest for Fusion EnergyDaniel Jassby · 2022 · ArticleWhat to watch
- STM-D-0612Implosion dynamics of wire array Z-pinches: experiments at Imperial CollegeS. V. Lebedev, D. J. Ampleford, S. N. Bland · 2004 · PaperPublished and peer-reviewed
- STM-D-0633Numerical experiments on plasma focus pinch current limitationS Lee, P Lee, S H Saw · 2008 · PaperPublished and peer-reviewed
- STM-D-0637The dynomak: An advanced spheromak reactor concept with imposed-dynamo current drive and next-generation nuclear power technologiesD.A. Sutherland, T.R. Jarboe, K.D. Morgan · 2014 · PaperDesigned, not yet built
- STM-D-0691Sustained Neutron Production from a Sheared-Flow Stabilized Z PinchY. Zhang, U. Shumlak, B. A. Nelson · 2019 · PaperPublished and peer-reviewed
- STM-D-0730Preparations for pB11 tests in the FF-2B dense plasma focusEric J. Lerner, Syed M. Hassan · 2024 · PaperOn the bench now
- STM-D-0733The spheromak confinement deviceT. R. Jarboe · 2005 · PaperPublished and peer-reviewed
- STM-D-0734Modelling of the internal dynamics and density in a tens of joules plasma focus deviceAriel Márquez, José González, Ariel Tarifeño-Saldivia · 2012 · PaperPublished and peer-reviewed
- STM-D-0746Plasma and Beams Dynamics in PF-1000 Device under the Full-Scale Energy StorageV. A. Gribkov, A. Banaszak, B. Bienkowska · 2006 · PaperPublished and peer-reviewed
- STM-D-0752First measurements of p11B fusion in a magnetically confined plasmaR. M. Magee, K. Ogawa, T. Tajima · 2023 · PaperPublished and peer-reviewed
- STM-D-0759The Plasma Compression Fusion Device—Enabling Nuclear Fusion IgnitionSalvatore Cezar Pais · 2019 · PaperDesigned, not yet built
- STM-D-0774Plasma Focus Radiative Model: Review of the Lee Model CodeS. Lee · 2014 · PaperPublished and peer-reviewed
- STM-D-0786Fusion proton diagnostic for the C-2 field reversed configurationR. M. Magee, R. Clary, S. Korepanov · 2014 · PaperOn the bench now
- STM-D-0787FESAC Decadal Study: Clean, multi-purpose fusion power from small field-reversed configuration (FRC) reactorsSamuel A. Cohen · 2024 · ReportOn the bench now
- STM-D-0792Road map to clean energy using laser beam ignition of boron-hydrogen fusionH. Hora, S. Eliezer, G.J. Kirchhoff · 2017 · PaperDesigned, not yet built
- STM-D-0796The Possibility of Producing a Dense Thermonuclear Plasma by an Intense Field Emission DischargeF. Winterberg · 1968 · PaperDesigned, not yet built
- STM-D-0797High-Gain Magnetized Inertial FusionStephen A. Slutz, Roger A. Vesey · 2012 · PaperPublished and peer-reviewed
- STM-D-0814Fusion IllusionsMichael Dittmar · 2008 · PaperWhat to watch
- STM-D-0831Nuclear energy: Status and future limitationsMichael Dittmar · 2012 · PaperWhat to watch
- STM-D-0855The Sheared-Flow-Stabilized Z-Pinch Approach to Fusion EnergyUri Shumlak, Brian A. Nelson, Ben J. Levitt · 2023 · TalkOn the bench now
- STM-D-0882Twelve Axioms of Fusion Energy R&DDaniel L. Jassby · 2020 · ReportWhat to watch
- STM-D-0883Production of dense thermonuclear plasmas by intense ion beamsFriedwardt Winterberg · 1975 · PaperDesigned, not yet built
- STM-D-0885Review of Recent Experiments with the Megajoule PF-1000 Plasma Focus DeviceH Schmidt, A Kasperczuk, M Paduch · 2002 · PaperPublished and peer-reviewed
- STM-D-0887Neutron Emission from the Plasma Focus PF-24 Device Under Different Ar Doping in Ar+D2 Mixtures — Experiments and SimulationsŁukasz Marciniak, Agnieszka Kulińska, Marek Scholz · 2018 · PaperPublished and peer-reviewed
- STM-D-0895Ion and electron acceleration in the field-reversed configuration with an odd-parity rotating magnetic fieldAlan H. Glasser, Samuel A. Cohen · 2002 · PaperPublished and peer-reviewed
- STM-D-0908Numerical Experiments Providing New Insights into Plasma Focus Fusion DevicesSing Lee, Sor Heoh Saw · 2010 · PaperPublished and peer-reviewed
- STM-D-0915Z-pinch discharges in aluminum and tungsten wiresJ. Ruiz-Camacho, F. N. Beg, A. E. Dangor · 1999 · PaperPublished and peer-reviewed
- STM-D-0917Influence of a Prepulse Current on a Fiber Z-PinchA. Lorenz, F. N. Beg, J. Ruiz-Camacho · 1998 · PaperPublished and peer-reviewed
- STM-D-0919TW-ps laser driven blocks for light ion beam fusion in solid density DTHeinrich Hora, Frederick Osman, Y. Cang · 2005 · PaperPublished and peer-reviewed
- STM-D-0922The heating of plasma focus electrodesE. Angeli, M. Frignani, S. Mannucci · 2006 · PaperPublished and peer-reviewed
- STM-D-0924Kinetic characteristics of ions in an inertial electrostatic confinement deviceD. Bhattacharjee, N. Buzarbaruah, S. R. Mohanty · 2020 · PaperPublished and peer-reviewed
- STM-D-0926Fast heat pulse propagation in hot plasmasEnzo Lazzaro, Hans Wilhelmsson · 1998 · PaperPublished and peer-reviewed
- STM-D-0927Light ion driven inertial confinement fusionJ. P. Quintenz, D. D. Bloomquist, R. J. Leeper · 1996 · PaperPublished and peer-reviewed
- STM-D-0930Modelling of macroscopic magnetic islands in tokamaksF. Porcelli, A. Airoldi, C. Angioni · 2001 · PaperPublished and peer-reviewed
- STM-D-0934Interplanetary missions with the GDM propulsion systemWilliam Emrich, Terry Kammash · 1998 · PaperDesigned, not yet built
- STM-D-0937Study on discharge plasma in a cylindrical inertial electrostatic confinement fusion deviceN. Buzarbaruah, N.J. Dutta, D. Borgohain · 2017 · PaperPublished and peer-reviewed
- STM-D-0939Hot Dense Capsule-Implosion Cores Produced by Z-Pinch Dynamic Hohlraum RadiationJ. E. Bailey, G. A. Chandler, Stephen A. Slutz · 2004 · PaperPublished and peer-reviewed
- STM-D-0940Nonelectric Applications of FusionKathryn McCarthy, Charles Baker, Edward Cheng · 2002 · PaperPublished and peer-reviewed
- STM-D-0941A Physics Exploratory Experiment on Plasma Liner FormationY. C. Francis Thio, Charles E. Knapp, Ronald C. Kirkpatrick · 2001 · PaperDesigned, not yet built
- STM-D-0945Deuterium anions in inertial electrostatic confinement devicesD. R. Boris, E. Alderson, G. Becerra · 2009 · PaperPublished and peer-reviewed
- STM-D-0946Role of Fusion Energy in a Sustainable Global Energy StrategyWayne Meier, Farokh Najmabadi, John Schmidt · 2002 · PaperOn the bench now
- STM-D-0948Fissile fuel breeding and minor actinide transmutation in the LIFE engineSümer Şahin, Mohammad Javed Khan, Rizwan Ahmed · 2011 · PaperDesigned, not yet built
- STM-D-0949Project Orion and Future Prospects for Nuclear Pulse PropulsionG. R. Schmidt, J. A. Bonometti, C. A. Irvine · 2002 · PaperDesigned, not yet built
- STM-D-0951Using VASIMR® for the Proposed Europa MissionEdgar A. Bering III, Matthew Giambusso, Mark Carter · 2014 · PaperDesigned, not yet built
- STM-D-0954Channeling of Fusion Alpha-Particle Power Using Minority Ion CatalysisAndrey Zhmoginov, Nathaniel Fisch · 2011 · PaperPublished and peer-reviewed
- STM-D-0958Relativistic laser-matter interaction: from attosecond pulse generation to fast ignitionG. A. Mourou, C. L. Labaune, Mike Dunne · 2007 · PaperDesigned, not yet built
- STM-D-0961Bifurcated Tokamak equilibria with vanishing edge current densityEnzo Lazzaro, Sergey V. Shchepetov · 1990 · PaperPublished and peer-reviewed
- STM-D-0964Fielding of the on-axis diagnostic package at ZM. J. Hurst, T. J. Nash, M. Derzon · 1999 · PaperPublished and peer-reviewed
- STM-D-0965An Engineering Test Facility for Heavy Ion Fusion – Options and ScalingWayne R. Meier, D. A. Callahan-Miller, J. F. Latkowski · 2001 · PaperDesigned, not yet built
- STM-D-0972Acoustically driven Magnetized Target FusionMichel Laberge, Stephen Howard, D. E. Richardson · 2013 · PaperOn the bench now
- STM-D-0973Detection of an anomalous pressure on a magneto-inertial-fusion load current diagnosticMark Hess, Brian Hutsel, Christopher Jennings · 2017 · PaperPublished and peer-reviewed
- STM-D-0975Two-dimensional MHD simulations of a neon Z pinch on HawkJ. W. Schumer, D. Mosher, B. Moosman · 2002 · PaperPublished and peer-reviewed
- STM-D-0976Nuclear Fusion Power PlantsShutaro Takeda, Richard Pearson · 2019 · PaperOn the bench now
- STM-D-0982Design of magnetized liner inertial fusion experiments using the Z facilityAdam B. Sefkow, Stephen A. Slutz, Joseph M. Koning · 2014 · PaperPublished and peer-reviewed
- STM-D-0987Space charge neutralization in inertial electrostatic confinement plasmasE. G. Evstatiev, R. A. Nebel, L. Chacón · 2007 · PaperPublished and peer-reviewed
- STM-D-0990Increasing plasma parameters using sheared flow stabilization of a Z-pinchU. Shumlak, B. A. Nelson, E. L. Claveau · 2017 · PaperOn the bench now
- STM-D-0994Generalized Lawson criterion for magnetic fusion applications in spaceDejan Petkow, Roland A. Gabrielli, Georg Herdrich · 2012 · PaperPublished and peer-reviewed
- STM-D-0997Thermonuclear inverse magnetic pumping power cycle for stellarator reactorsDarwin D.-M. Ho, Russell M. Kulsrud · 1985 · ReportDesigned, not yet built
- STM-D-0998Fiber Ablation in the Solid-Deuterium Z PinchIrvin R. Lindemuth, Gene H. McCall, Richard A. Nebel · 1989 · PaperPublished and peer-reviewed
- STM-D-0999Volkov Solution for Two Laser Beams and ITERMiroslav Pardy · 2006 · PaperPublished and peer-reviewed
- STM-D-1006Plasma dynamics during the evolution of two wire Z-pinchF. N. Beg, J. Ruiz-Camacho, M. G. Haines · 2004 · PaperPublished and peer-reviewed
- STM-D-1008Propulsion and Power Generation Capabilities of a Dense Plasma Focus (DPF) Fusion System for Future Military Aerospace VehiclesSean D. Knecht, Robert E. Thomas, Franklin B. Mead · 2006 · PaperDesigned, not yet built
- STM-D-1012Foam target experiments with the PF-1000 plasma focus facilityL. Karpiński, M. Scholz, J. G. Linhart · 1999 · PaperPublished and peer-reviewed
- STM-D-1015Neutron emission from a fast plasma focus of 400 JoulesPatricio Silva, José Moreno, Leopoldo Soto · 2003 · PaperPublished and peer-reviewed
- STM-D-1022A model of hard X-rays emission from free expanding Plasma-Focus dischargesEzequiel O. Fogliatto, José González, M. Barbaglia · 2014 · PaperPublished and peer-reviewed
- STM-D-1023HB11—Understanding Hydrogen-Boron Fusion as a New Clean Energy SourceWarren McKenzie, Dimitri Batani, Thomas A. Mehlhorn · 2023 · PaperOn the bench now
- STM-D-1025Cross-point coronal plasma dynamics in two- and four-wire x-pinchesR. E. Madden, S. C. Bott, D. Haas · 2008 · PaperPublished and peer-reviewed
- STM-D-1029Role of the shear flow profile on the stability of magnetic islandsAndrei I. Smolyakov, Enzo Lazzaro, R. Coelho · 2002 · PaperPublished and peer-reviewed
- STM-D-1031Microfabricated Wire Arrays for Z-PinchMichael J. Cich, John F. Klem, Olga Blum Spahn · 2008 · ReportOn the bench now
- STM-D-1032Fusion-electric propulsion for hypersonic flightH. David Froning Jr., Robert W. Bussard · 1993 · PaperDesigned, not yet built
- STM-D-1034Aneutronic Fusion in a Degenerate PlasmaS. Son, N. J. Fisch · 2004 · PaperPublished and peer-reviewed
- STM-D-1039PBFA II ion diode theory and implicationsJ. P. VanDevender, S. A. Slutz, D. B. Seidel · 1987 · PaperPublished and peer-reviewed
- STM-D-1040Thin Liquid Wall Behavior Under IFE Cyclic OperationA. R. Raffray, S. I. Abdel-Khalik, D. Haynes · 2003 · PaperDesigned, not yet built
- STM-D-1041Steady-state radiation ablation in the wire-array Z pinchEdmund P. Yu, Bryan V. Oliver, Daniel B. Sinars · 2007 · PaperPublished and peer-reviewed
- STM-D-1047Nuclear systems for Mars explorationTibor S. Balint · 2004 · PaperPublished and peer-reviewed
- STM-D-1048Relativistic high-power laser–matter interactionsYousef I. Salamin, S.X. Hu, Karen Z. Hatsagortsyan · 2006 · PaperPublished and peer-reviewed
- STM-D-1049Z-Pinch fusion-based nuclear propulsionJanie H. Miernik, Geoffrey Statham, Leo Fabisinski · 2013 · PaperDesigned, not yet built
- STM-D-1052Toroidal Alfvén Eigenmodes in TFTR Deuterium-Tritium PlasmasR. Nazikian, G.Y. Fu, Z. Chang · 1998 · ReportPublished and peer-reviewed
- STM-D-1054A plasma focus driven by a capacitor bank of tens of joulesPatricio Silva, Leopoldo Soto, José Moreno · 2002 · PaperOn the bench now
- STM-D-1059Status and plans for inertial confinement fusionMarshall Sluyter, Roger O. Bangerter, J. Pace VanDevender · 1991 · PaperOn the bench now
- STM-D-1065Transient electrical discharges in small devicesLeopoldo Soto, Andrey Esaulov, José Moreno · 2001 · PaperPublished and peer-reviewed
- STM-D-1069Rotating nonlinear magnetic islands in a tokamak plasmaAndrei I. Smolyakov, Akira Hirose, Enzo Lazzaro · 1995 · PaperPublished and peer-reviewed
- STM-D-1075Low Fuel Convergence Path to Direct-Drive Fusion IgnitionKim Molvig, Mark J. Schmitt, B. J. Albright · 2016 · PaperDesigned, not yet built
- STM-D-1091Neutron production rate and plasma characteristics of spherically convergent beam fusionKunihito Yamauchi, Yasushi Takeuchi, Yutaka Ogino · 2001 · PaperPublished and peer-reviewed
- STM-D-1094Progress and critical issues for IFE blanket and chamber researchB. Grant Logan, Wayne R. Meier, Ralph W. Moir · 2000 · PaperDesigned, not yet built
- STM-D-1095Nonlinear Flow Generation By Electrostatic Turbulence In TokamaksW. X. Wang, P. H. Diamond, T. S. Hahm · 2010 · PaperPublished and peer-reviewed
- STM-D-1096Modeling laser-driven ion acceleration with deep learningB. Z. Djordjević, A. J. Kemp, J. Kim · 2021 · PaperPublished and peer-reviewed
- STM-D-1098Activities Study of Short-lived Radioisotopes with a Filippov-type Plasma FocusAlireza Asle Zaeem, S. Mahmood Sadat Kiai, Mahmood Sedaghatizade · 2008 · PaperDesigned, not yet built
- STM-D-1101Laser nuclear fusion: current status, challenges and prospectJ. Badziak · 2012 · PaperPublished and peer-reviewed
- STM-D-1110Perfectly conducting incompressible fluid model of a wire array implosionAlexander L. Velikovich, Igor V. Sokolov, Andrey A. Esaulov · 2002 · PaperPublished and peer-reviewed
- STM-D-1111Disruption control on FTU and ASDEX Upgrade with ECRHB. Esposito, G. Granucci, S. Nowak · 2009 · PaperPublished and peer-reviewed
- STM-D-1115Conjectured Metastable Super-explosives Formed Under High Pressure for Thermonuclear IgnitionFriedwardt Winterberg · 2008 · PaperWhat to watch
- STM-D-1116Ignition of a Deuterium Micro-Detonation with a Gigavolt Super Marx GeneratorFriedwardt Winterberg · 2008 · PaperDesigned, not yet built
09 Lattice confinement fusion
- STM-D-0007LENR Products: Lattice Confinement Fusion (LCF), Fission, or Both?Theresa L. Benyo, Pamela Mosier-Boss, Lawrence Forsley · 2023 · ReportOn the bench now
- STM-D-0008Accessing Icy World Oceans using Lattice Confinement Fusion Fast FissionTheresa L Benyo, Lawrence P Forsley, Rodger Dyson · 2025 · ReportDesigned, not yet built
- STM-D-0010Accessing Icy Worlds Using Lattice Confinement Fusion (LCF) Fast FissionTheresa L. Benyo · 2023 · ReportDesigned, not yet built
- STM-D-0011A New Way of Triggering Nuclear FusionT Benyo, L Forsley, B Steinetz · 2022 · ReportPublished and peer-reviewed
- STM-D-0015Electron Screened and Enhanced Nuclear ReactionsLawrence P. Forsley, Louis F. DeChiaro · 2022 · ReportOn the bench now
- STM-D-0016Experimental Observations of Nuclear Activity in Deuterated Materials Subjected to a Low-Energy Photon BeamSteinetz, Bruce M., Benyo, Theresa L., Pines, Vladimir · 2017 · ReportOn the bench now
- STM-D-0017Nuclear fusion reactions in deuterated metals (theory)Pines, Steinetz, Forsley et al. · 2020 · PaperPublished and peer-reviewed
- STM-D-0021NASA Glenn Lattice Confinement Fusion white papersNASA Glenn · 2020 · ReportOn the bench now
- STM-D-0028Novel nuclear reactions in bremsstrahlung-irradiated deuterated metalsSteinetz, Benyo, Chait et al. · 2020 · PaperPublished and peer-reviewed
- STM-D-0031Lattice Confinement Fusion (LCF) Technology Utilized By Astral Systems LtdTheresa L Benyo, Lawrence Forsley · 2024 · ReportOn the bench now
- STM-D-0034Improvements in and relating to isotope productionTom WALLACE-SMITH, Thomas Peter Jackson HAYWOOD, Robert ANNEWANDTER · 2025 · PatentOn the bench now
- STM-D-0064The Trajectory of Recent Solid State Fusion ResultsLawrence P Forsley · 2026 · ReportPublished and peer-reviewed
- STM-D-0065Lattice Confinement Fusion-Fast-FissionLawrence P Forsley, Pamela A Mosier-Boss, Theresa L Benyo · 2024 · ReportOn the bench now
- STM-D-0069Lattice Confinement Fusion (LCF) OverviewL Forsley, T Benyo, B Steinetz · 2020 · ReportPublished and peer-reviewed
- STM-D-0071Revisiting the cold case of cold fusionCurtis P. Berlinguette, Yet-Ming Chiang, Jeremy N. Munday · 2019 · PaperPublished and peer-reviewed
- STM-D-0176Electric discharge device for producing interactions between nucleiPhilo T. Farnsworth, International Telephone and Telegraph Corporation · 1966 · PatentDesigned, not yet built
- STM-D-0339Risk and Scientific Reputation: Lessons from Cold FusionHuw Price · 2022 · PaperWhat to watch
- STM-D-0346Andrea Rossi E-Cat / Energy Catalyzer (Ni-H LENR reactor)Andrea Rossi · 2012 · PatentDesigned, not yet built
- STM-D-0392A primer for electroweak induced low-energy nuclear reactionsY. N. Srivastava, A. Widom, L. Larsen · 2010 · PaperPublished and peer-reviewed
- STM-D-0395Cold (Metal-Enhanced) Fusion, Geo-Fusion, and Cold NucleosynthesisS. E. Jones, J. E. Ellsworth · 2005 · PaperWhat to watch
- STM-D-0399Comments on “Thermal behavior of polarized Pd/D electrodes prepared by co-deposition”Kirk L. Shanahan · 2005 · PaperPublished and peer-reviewed
- STM-D-0401Controlled Electron Capture: Enhanced Stimulation and Calorimetry MethodsFrancis Tanzella, Robert Godes, Rogelio Herrera · 2017 · PaperOn the bench now
- STM-D-0403Electrochemical loading to produce the Fleischmann-Pons heat effect (FPHE)Michael C.H. McKubre · 2020 · PaperPublished and peer-reviewed
- STM-D-0404Cold Fusion ExplainedEdmund Storms · 2025 · PaperPublished and peer-reviewed
- STM-D-0411Experimental procedures for excess heat generation from cold fusion reactionsTadahiko Mizuno, Jed Rothwell · 2020 · PaperOn the bench now
- STM-D-04203He/4He Production Ratios by Tetrahedral Symmetric CondensationAkito Takahashi · 2006 · PaperPublished and peer-reviewed
- STM-D-0423Biological Transmutations: Historical PerspectiveJean-Paul Biberian · 2012 · PaperWhat to watch
- STM-D-0426Deuteron Cluster Fusion and ASHAkito Takahashi · 2007 · PaperPublished and peer-reviewed
- STM-D-0427Electrically induced anomalous thermal phenomena in nanostructured wiresFrancesco Celani, Cesare Lorenzetti · 2020 · PaperOn the bench now
- STM-D-0428Cold FusionJean-Paul Biberian · 2014 · PaperPublished and peer-reviewed
- STM-D-0429Cold Nuclear FusionJohann Rafelski, Steven E. Jones · 1987 · ArticleSettled physics
- STM-D-0430Anomalous Heat Effects via Longitudinal and Transversal Excitations in Constantan Wires: Advances in Electromigration and Plasma GenerationF. Celani, C. Lorenzetti, E. Purchi · 2026 · PaperOn the bench now
- STM-D-0433Enhancement of deuteron-fusion reactions in metals and experimental implicationsA. Huke, K. Czerski, P. Heide · 2008 · PaperPublished and peer-reviewed
- STM-D-0442Electrochemically-enhanced nuclear fusion of deuteriumKuo-Yi Chen, Phil A. Schauer, Sergey Issinski · 2024 · PaperPublished and peer-reviewed
- STM-D-0446Casimir forces across magnetic plasmas at nuclear separationsS. K. Panja, L. Inacio, S. Pal · 2025 · PaperPublished and peer-reviewed
- STM-D-0447An Explanation of Low-energy Nuclear Reactions (Cold Fusion)Edmund Storms · 2012 · PaperWhat to watch
- STM-D-0452Analysis of Ni-hydride thin film after surface plasmons generation by laser techniqueV. Violante, E. Castagna, C. Sibilia · 2005 · PaperPublished and peer-reviewed
- STM-D-0472Enhancement of the electron screening effect for d + d fusion reactions in metallic environmentsK. Czerski, A. Huke, A. Biller · 2001 · PaperPublished and peer-reviewed
- STM-D-0480“Nattoh” Model for Cold FusionTakaaki Matsumoto · 1989 · PaperWhat to watch
- STM-D-0481Anomalous Heat Reaction from Hydrogen and MetalsTadahiko Mizuno, Jed Rothwell · 2025 · PaperOn the bench now
- STM-D-0483Excess Heat from Palladium Deposited on NickelTadahiko Mizuno, Jed Rothwell · 2019 · PaperPublished and peer-reviewed
- STM-D-0493Bird’s Eye View of Phonon Models for Excess Heat in the Fleischmann–Pons ExperimentPeter L. Hagelstein · 2012 · PaperPublished and peer-reviewed
- STM-D-0497Condensed matter nuclear science (cold fusion): an updateJean-Paul Biberian · 2007 · PaperPublished and peer-reviewed
- STM-D-0499Bose–Einstein Condensation Nuclear Fusion: Role of Monopole TransitionYeong E. Kim, Thomas E. Ward · 2012 · PaperPublished and peer-reviewed
- STM-D-0500Bose–Einstein Condensate Theory of Deuteron Fusion in MetalYeong E. Kim · 2011 · PaperPublished and peer-reviewed
- STM-D-0504Anomalous effects in hydrogen-charged palladium — A reviewG.K. Hubler · 2007 · PaperPublished and peer-reviewed
- STM-D-0509A systematic error in mass flow calorimetry demonstratedKirk L. Shanahan · 2002 · PaperPublished and peer-reviewed
- STM-D-0511Cryogenic Calorimetry of “Exploding” PdDx WiresF. L. Tanzella, J. Bao, M. C. H. McKubre · 2012 · PaperPublished and peer-reviewed
- STM-D-0514Direct Electricity Production from NANOR®-type ZrO2-PdNiD Components Using UltrasoundMitchell R. Swartz · 2024 · PaperOn the bench now
- STM-D-0518Experimental techniques for the investigation of the electron screening effect for d+d fusion reactions in metallic environmentsArmin Huke, Konrad Czerski, Peter Heide · 2003 · PaperPublished and peer-reviewed
- STM-D-0523Advancements in the Production of Anomalous Heat Effect in Constantan Wires: Developing a Robust Experimental ProtocolFrancesco Celani, C. Lorenzetti, G. Vassallo · 2024 · PaperOn the bench now
- STM-D-0533Deuteron-deuteron nuclear reactions at extremely low energiesKonrad Czerski · 2022 · PaperPublished and peer-reviewed
- STM-D-0541Electron Screening in Deuteron–Deuteron Reactions on a Zr Target with Oxygen and Carbon ContaminationAgata Kowalska, Mateusz Kaczmarski, Konrad Czerski · 2025 · PaperPublished and peer-reviewed
- STM-D-0546Detection of High Tritium Activity on the Central Titanium Electrode of a Plasma Focus DeviceR. K. Rout, M. Srinivasan, A. Shyam · 1991 · PaperPublished and peer-reviewed
- STM-D-0554Scaling up the Lattice Energy ConverterF. E. Gordon, H. J. Whitehouse · 2024 · PaperOn the bench now
- STM-D-0568Observation of cold nuclear fusion in condensed matterS. E. Jones, E. P. Palmer, J. B. Czirr · 1989 · PaperPublished and peer-reviewed
- STM-D-0570LENR Transmutation of Stable Sr and K Isotopes in Activated Microbiological Syntrophic Anaerobic AssociationAlla Kornilova, Sergey Gaydamaka, Vladimir Vysotskii · 2022 · PaperPublished and peer-reviewed
- STM-D-0576High-Frequency Gravitational Wave Induced Nuclear FusionGiorgio Fontana, Robert M. L. Baker, Jr. · 2007 · PaperDesigned, not yet built
- STM-D-0586Low-Energy Nuclear Reactions in MetalsJirohta Kasagi · 2004 · PaperPublished and peer-reviewed
- STM-D-0599Measurement of the enhanced screening effect of the d + d reactions in metalsA. Huke, K. Czerski, P. Heide · 2007 · PaperPublished and peer-reviewed
- STM-D-0600Microscopic Insights into the Anomalous Heat Effect that Unify Disparate Experimental ResultsGraham K. Hubler · 2024 · PaperWhat to watch
- STM-D-0602Lessons from Cold Fusion Archives and from HistoryJed Rothwell · 2015 · PaperPublished and peer-reviewed
- STM-D-0603Mechanism of deuteron cluster fusion by EQPET modelAkito Takahashi · 2005 · PaperPublished and peer-reviewed
- STM-D-0608Temperature Dependence of Excess Power in Two-laser ExperimentsPeter L. Hagelstein, Dennis Letts · 2014 · PaperPublished and peer-reviewed
- STM-D-0614The Pd + D Co-Deposition: Process, Product, PerformanceStanislaw Szpak · 2014 · PaperPublished and peer-reviewed
- STM-D-0623Observation of nuclear transmutation reactions induced by D2 gas permeation through Pd complexesYasuhiro Iwamura, Takehiko Itoh, Mitsuru Sakano · 2006 · PaperPublished and peer-reviewed
- STM-D-0624Micro ball lightning obtained during underwater spark discharges, compared with natural onesT.-A. Matsumoto · 2001 · PaperWhat to watch
- STM-D-0636Transmutation of stable isotopes and deactivation of radioactive waste in growing biological systemsVladimir I. Vysotskii, Alla A. Kornilova · 2013 · PaperPublished and peer-reviewed
- STM-D-0649The Nature of Cold Fusion (Cold Fusion Made Simple)Edmund Storms · 2024 · PaperPublished and peer-reviewed
- STM-D-0653Mossbauer investigation of the phenomenon of isotope (Mn55 to Fe57) nuclear transmutation in growing biological culturesVladimir I. Vysotskii, Alia A. Kornilova, Igor I. Samoylenko · 1999 · PaperPublished and peer-reviewed
- STM-D-0667Mass and Heat Flow Calorimetry in Brillouin’s ReactorFrancis Tanzella, Robert Godes, Jin Liu · 2020 · PaperOn the bench now
- STM-D-0675Study of deuterium charging in palladium by the electrolysis of heavy water: Heat excess productionL. Bertalot, F. De Marco, A. De Ninno · 1993 · PaperPublished and peer-reviewed
- STM-D-0678Review of permeation-induced nuclear transmutation reactionsYasuhiro Iwamura · 2020 · PaperPublished and peer-reviewed
- STM-D-0679Theory of Bose–Einstein condensation mechanism for deuteron-induced nuclear reactions in micro/nano-scale metal grains and particlesYeong E. Kim · 2009 · PaperPublished and peer-reviewed
- STM-D-0682Neutron production from the fracture of piezoelectric rocksA Widom, J Swain, Y N Srivastava · 2012 · PaperPublished and peer-reviewed
- STM-D-0686Progress in Understanding and Scaling Up the Lattice Energy Converter (LEC)F. E. Gordon, H. J. Whitehouse · 2025 · PaperOn the bench now
- STM-D-0689Nanomaterials engineering for enhanced low energy nuclear reactions: a comprehensive review and future prospectsNurlan Bakranov, Zhanserik Kuli, David Nagel · 2024 · PaperPublished and peer-reviewed
- STM-D-0717Total Calorimetry (“From the Wall”) in a Brillouin ReactorFrancis Tanzella, Robert Godes, Jin Liu · 2025 · PaperOn the bench now
- STM-D-0725Reply to “Comment on papers by K. Shanahan that propose to explain anomalous heat generated by cold fusion”, E. Storms, Thermochim. Acta, 2006Kirk L. Shanahan · 2006 · PaperPublished and peer-reviewed
- STM-D-0727Screening energy for low energy nuclear reactions in condensed matterJ. Kasagi, Y. Honda, K. Fang · 2020 · PaperPublished and peer-reviewed
- STM-D-0728Transmutations and isotopic shifts in LENR experimentsMahadeva Srinivasan, K.P. Rajeev · 2020 · PaperPublished and peer-reviewed
- STM-D-0732Impedance Spectroscopy Distinguishes Active ZrO2-PdNiD NANOR®-type LANR ComponentsMitchell Swartz · 2024 · PaperOn the bench now
- STM-D-0735Low Energy Nuclear Reactions: Exciting New Science and Potential Clean EnergyDavid J. Nagel, Kamron C. Fazel · 2012 · PaperPublished and peer-reviewed
- STM-D-0744High-Temperature Plasma in Casimir PhysicsSuman Kumar Panja, Mathias Boström · 2026 · PaperPublished and peer-reviewed
- STM-D-0756Observation of Excess Heat by Activated Metal and Deuterium GasTadahiko Mizuno · 2017 · PaperPublished and peer-reviewed
- STM-D-0782Recent Progress on Phonon-Nuclear Theoretical ModelsPeter L. Hagelstein · 2022 · PaperPublished and peer-reviewed
- STM-D-0784Models based on phonon-nuclear couplingPeter L. Hagelstein · 2020 · PaperPublished and peer-reviewed
- STM-D-0802Oscillating Excess Power Gain and Magnetic Domains in NANOR -type CF/LANR ComponentsMitchell R. Swartz · 2017 · PaperOn the bench now
- STM-D-0804Exploring artificial intelligence techniques to research low energy nuclear reactionsAnasse Bari, Tanya Pushkin Garg, Yvonne Wu · 2024 · PaperPublished and peer-reviewed
- STM-D-0816Thermal Changes in Palladium Deuteride Induced by Laser Beat FrequenciesDennis Letts, Dennis Cravens, Peter L. Hagelstein · 2008 · PaperPublished and peer-reviewed
- STM-D-0820The effect of ultrasound on the electrochemical loading of hydrogen in palladiumA. Wark, S. Crouch-Baker, M.C.H. McKubre · 1996 · PaperPublished and peer-reviewed
- STM-D-0825Lattice Energy Converter II: Iron Hydrogen Host MaterialF.E. Gordon, H.J. Whitehouse · 2022 · PaperOn the bench now
- STM-D-0828Transport and collapse of micro ball lightningTakaaki Matsumoto · 2000 · PaperWhat to watch
- STM-D-0833Ultra low momentum neutron catalyzed nuclear reactions on metallic hydride surfacesA. Widom, L. Larsen · 2006 · PaperPublished and peer-reviewed
- STM-D-0843Modified Szpak Protocol for Excess HeatDennis Letts, Peter L. Hagelstein · 2012 · PaperOn the bench now
- STM-D-0863Photon Radiation Calorimetry for Anomalous Heat Generation in NiCu Multilayer Thin Film During Hydrogen Gas DesorptionJ. Kasagi, T. Itoh, Y. Iwamura · 2025 · PaperPublished and peer-reviewed
- STM-D-0872Specially Conditioned EM Fields to Reduce Nuclear Fusion Input Energy NeedsH. David Froning Jr., Terence W. Barrett, George H. Miley · 2012 · PaperPublished and peer-reviewed
- STM-D-0876Isotopic and Elemental Composition of Substance in Nickel–Hydrogen Heat GeneratorsK. A. Alabin, S. N. Andreev, A. G. Sobolev · 2018 · PaperPublished and peer-reviewed
- STM-D-0880Progress in Excess of Power Experiments with Electrochemical Loading of Deuterium in PalladiumVittorio Violante, S. Moretti, Mario Bertolotti · 2006 · PaperPublished and peer-reviewed
- STM-D-0891Nickel-hydrogen reactors: heat generation, isotopic and elemental composition of fuelAlexander G. Parkhomov, Sergey N. Zabavin, Timur R. Timerbulatov · 2017 · PaperOn the bench now
- STM-D-0896The Science of Low Energy Nuclear ReactionEdmund Storms · 2007 · BookPublished and peer-reviewed
- STM-D-0897Research into Heat Generators Similar to High-temperature Rossi ReactorA.G. Parkhomov, E.O. Belousova · 2016 · PaperOn the bench now
- STM-D-0899Thermal behavior of polarized Pd/D electrodes prepared by co-depositionS. Szpak, P. A. Mosier-Boss, M. H. Miles · 2004 · PaperPublished and peer-reviewed
- STM-D-0901Wide-Ranging Studies on the Emission of Neutrons and Tritium by LENR Configurations: An Historical Review of the Early BARC ResultsMahadeva Srinivasan · 2009 · PaperPublished and peer-reviewed
- STM-D-0905Lattice Energy ConverterF.E. Gordon, H.J. Whitehouse · 2022 · PaperOn the bench now
- STM-D-0911Laser Stimulation of Deuterated Palladium: Past and PresentDennis Letts, Dennis Cravens · 2005 · PaperPublished and peer-reviewed
- STM-D-0950Measurements of low-energy (d,n) reactions for BNCTN. Colonna, L. Beaulieu, L. Phair · 1999 · PaperPublished and peer-reviewed
- STM-D-0992In beam tests of implanted helium targetsJ. E. McDonald, Ralph H. France III, R. A. Jarvis · 2006 · PaperPublished and peer-reviewed
- STM-D-0996Accessing Icy World Oceans Using Lattice Confinement Fusion Fast FissionTheresa L. Benyo, Lawrence P. Forsley · 2022 · PaperDesigned, not yet built
- STM-D-1061Inertial Confinement Fusion Propulsion for Deep Space Missions RevisitedGeorge H. Miley, Xiaoling Yang, Kirk Flippo · 2010 · PaperDesigned, not yet built
- STM-D-1068The National Ignition Facility: Ushering in a new age for high energy density scienceE. I. Moses, R. N. Boyd, B. A. Remington · 2009 · PaperOn the bench now
- STM-D-1074A Light Ion Beam Driver for the Laboratory Microfusion FacilityJ. J. Ramirez, K. R. Prestwich, R. W. Stinnett · 1991 · PaperDesigned, not yet built
- STM-D-1076Absolute densities of energetic hydrogen ion species in an abnormal hollow cathode dischargeJ. Kipritidis, J. Khachan, M. Fitzgerald · 2008 · PaperPublished and peer-reviewed
- STM-D-1077Sheared flow stabilization experiments in the ZaP flow Z pinchU. Shumlak, B. A. Nelson, R. P. Golingo · 2003 · PaperOn the bench now
- STM-D-1088Tunneling through Coulombic barriers: quantum control of nuclear fusionRajdeep Saha, Andreas Markmann, Victor S. Batista · 2012 · PaperPublished and peer-reviewed
10 Inertia and gravity from the vacuum
- STM-D-0014Inertia and Gravitation in the Zero-Point Field ModelHaisch, Bernhard, Rueda, Alfonso · 2000 · ReportPublished and peer-reviewed
- STM-D-0018Inertia as a zero-point-field Lorentz forceBernard Haisch, Alfonso Rueda, Harold E. Puthoff · 1994 · PaperPublished and peer-reviewed
- STM-D-0058Vacuum quantum fluctuations in curved space and the theory of gravitationAndrei D. Sakharov · 1967 · PaperPublished and peer-reviewed
- STM-D-0299On the Origin of Gravity and the Laws of NewtonErik P. Verlinde · 2010 · PaperPublished and peer-reviewed
- STM-D-0300DIRD Antigravity for Aerospace ApplicationsDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0314Polarizable-Vacuum (PV) representation of general relativityH. E. Puthoff · 1999 · PaperPublished and peer-reviewed
- STM-D-0389A hybrid craft using an inertial mass modification deviceSalvatore Cezar Pais · 2017 · PaperDesigned, not yet built
- STM-D-0402Electrodynamics in the zero-point field: on the equilibrium spectral energy distribution and the origin of inertial massMichael Ibison · 2001 · PaperPublished and peer-reviewed
- STM-D-0412Energy does not have a Gravitational Mass (Flaw of the Einstein’s gravitational theory)Takaaki Musha · 2023 · PaperWhat to watch
- STM-D-0443Emergent Gravity and the Dark UniverseErik P. Verlinde · 2017 · PaperPublished and peer-reviewed
- STM-D-0449Classical spinning magnetic dipole in classical electrodynamics with classical electromagnetic zero-point radiationTimothy H. Boyer · 1984 · PaperPublished and peer-reviewed
- STM-D-0468Casimir forces and non-Newtonian gravitationRoberto Onofrio · 2006 · PaperPublished and peer-reviewed
- STM-D-0526Engineering the Zero-Point Field and Polarizable Vacuum For Interstellar FlightH. E. Puthoff, S. R. Little, M. Ibison · 2002 · PaperWhat to watch
- STM-D-0537Contribution to Inertial Mass by Reaction of the Vacuum to Accelerated MotionAlfonso Rueda, Bernhard Haisch · 1998 · PaperPublished and peer-reviewed
- STM-D-0601Thermal noise-limited beam balance as prototype of the Archimedes vacuum weight experiment and B-L dark photon searchAnnalisa Allocca, Saverio Avino, Enrico Calloni · 2024 · PaperOn the bench now
- STM-D-0613The Planck Constant and the Origin of Mass Due to a Higher Order Casimir EffectC. Baumgärtel, M. Tajmar · 2018 · PaperPublished and peer-reviewed
- STM-D-0617The classical linear oscillator in classical electrodynamics with classical zero-point radiationTimothy H. Boyer · 2026 · PaperPublished and peer-reviewed
- STM-D-0641Quarks, magnetic monopoles and negative massF. Winterberg · 1975 · PaperWhat to watch
- STM-D-0652Inertia as reaction of the vacuum to accelerated motionAlfonso Rueda, Bernhard Haisch · 1998 · PaperPublished and peer-reviewed
- STM-D-0661Stochastic nonrelativistic approach to gravity as originating from vacuum zero-point field van der Waals forcesDaniel C. Cole, Alfonso Rueda, Konn Danley · 2001 · PaperPublished and peer-reviewed
- STM-D-0666Ground state of hydrogen as a zero-point-fluctuation-determined stateH. E. Puthoff · 1987 · PaperPublished and peer-reviewed
- STM-D-0670The Tajmar effect from quantised inertiaM. E. McCulloch · 2011 · PaperPublished and peer-reviewed
- STM-D-0695Minimum accelerations from quantised inertiaM. E. McCulloch · 2010 · PaperPublished and peer-reviewed
- STM-D-0699Physics of the zero-point field: implications for inertia, gravitation and massBernhard Haisch, Alfonso Rueda, H. E. Puthoff · 1997 · PaperPublished and peer-reviewed
- STM-D-0715Testing quantised inertia on the emdriveM. E. McCulloch · 2015 · PaperPublished and peer-reviewed
- STM-D-0716Theory of a Mach Effect Thruster IHeidi Fearn, Adam Zachar, Keith Wanser · 2015 · PaperOn the bench now
- STM-D-0751Simulation of the hydrogen ground state in stochastic electrodynamicsTheo M. Nieuwenhuizen, Matthew T. P. Liska · 2015 · PaperPublished and peer-reviewed
- STM-D-0753Stochastic Electrodynamics: Renormalized Noise in the Hydrogen Ground-State ProblemTheo M. Nieuwenhuizen · 2020 · PaperPublished and peer-reviewed
- STM-D-0778Inertia as a zero-point-field force: Critical analysis of the Haisch-Rueda-Puthoff inertia theoryYefim S. Levin · 2009 · PaperPublished and peer-reviewed
- STM-D-0799Stochastic Electrodynamics: Lessons from Regularizing the Harmonic OscillatorTheodorus Maria Nieuwenhuizen · 2019 · PaperPublished and peer-reviewed
- STM-D-0803Theory of a Mach Effect ThrusterHeidi Fearn, James F. Woodward, Keith Wanser · 2014 · PaperOn the bench now
- STM-D-0808Thermodynamics of Spacetime: The Einstein Equation of StateTed Jacobson · 1995 · PaperPublished and peer-reviewed
- STM-D-0862Update on an Electromagnetic Basis for Inertia, Gravitation, the Principle of Equivalence, Spin and Particle Mass RatiosBernard Haisch, Alfonso Rueda, L. J. Nickisch · 2002 · PaperPublished and peer-reviewed
- STM-D-0864Inertia and Gravitation as Vacuum Effects — the case for Passive Gravitational MassAlfonso Rueda · 2004 · PaperPublished and peer-reviewed
- STM-D-0902The Archimedes experimentEnrico Calloni, S. Caprara, Martina De Laurentis · 2015 · PaperOn the bench now
- STM-D-0909On the Stability of Classical Orbits of the Hydrogen Ground State in Stochastic ElectrodynamicsTheodorus M. Nieuwenhuizen · 2016 · PaperPublished and peer-reviewed
- STM-D-0914A new experimental approach to Mach's principle and relativistic gravitationJames F. Woodward · 1990 · PaperPublished and peer-reviewed
- STM-D-0921Advances in the proposed electromagnetic zero-point field theory of inertiaBernhard Haisch, Alfonso Rueda, Harold E. Puthoff · 1998 · PaperPublished and peer-reviewed
- STM-D-0923The Zero-Point Field and InertiaBernhard Haisch, Alfonso Rueda · 1998 · PaperPublished and peer-reviewed
- STM-D-0931Quantum Theory in Accelerated Frames of ReferenceBahram Mashhoon · 2006 · PaperPublished and peer-reviewed
- STM-D-0936Gravity as a zero-point-fluctuation forceHarold E. Puthoff · 1989 · PaperPublished and peer-reviewed
- STM-D-0942Inertial mass and the quantum vacuum fieldsBernard Haisch, Alfonso Rueda, York Dobyns · 2001 · PaperPublished and peer-reviewed
- STM-D-0962A ZPF-Mediated Cosmological Origin of Electron InertiaMichael Ibison · 2002 · PaperPublished and peer-reviewed
- STM-D-0979On the Electromagnetic Origin of Inertia and Inertial MassAlexandre A. Martins, Mário J. Pinheiro · 2008 · PaperPublished and peer-reviewed
- STM-D-1021Making Starships and Stargates: The Science of Interstellar Transport and Absurdly Benign WormholesJames F. Woodward · 2013 · BookOn the bench now
- STM-D-1026The Pioneer Effect: A New Physics with a New PrincipleRussell Bagdoo · 2022 · PaperWhat to watch
- STM-D-1044Polarizable-Vacuum Approach to General RelativityHarold E. Puthoff · 2002 · PaperPublished and peer-reviewed
- STM-D-1045Polarizable-Vacuum (PV) Approach to General RelativityHarold E. Puthoff · 2002 · PaperPublished and peer-reviewed
- STM-D-1060On the carrier of inertiaPatrick Grahn, Arto Annila, Erkki Kolehmainen · 2018 · PaperPublished and peer-reviewed
- STM-D-1066Modeling inertia through the interaction with quantum fluctuationsJaume Giné, Giuseppe Gaetano Luciano · 2021 · PaperPublished and peer-reviewed
- STM-D-1067Gravity and the quantum vacuum inertia hypothesisAlfonso Rueda, Bernard Haisch · 2005 · PaperPublished and peer-reviewed
- STM-D-1070Quantum ground states as equilibrium particle–vacuum interaction statesHarold E. Puthoff · 2015 · PaperPublished and peer-reviewed
11 Gravity control and superconductors
- STM-D-0003High frequency gravitational wave generatorSalvatore Cezar Pais, US Department of Navy · 2017 · PatentDesigned, not yet built
- STM-D-0033Gravity Probe B: final results (frame-dragging)Everitt et al. · 2011 · PaperSettled physics
- STM-D-0038Effects of a gravitomagnetic field on pure superconductorsNing Li, D. Torr · 1991 · PaperPublished and peer-reviewed
- STM-D-0042Anti-Gravity with Present Technology: Implementation and Theoretical FoundationFrederick E. Alzofon · 1981 · PaperDesigned, not yet built
- STM-D-0047A possibility of gravitational force shielding by bulk YBCO superconductorPodkletnov, Nieminen · 1992 · PaperWhat to watch
- STM-D-0054Gravity modification by high-temperature superconductors (null replication)C. Woods, J. Helme, S. Cooke · 2001 · PaperPublished and peer-reviewed
- STM-D-0057Piezoelectricity-induced High Temperature SuperconductorSalvatore Cezar Pais, US Department of Navy · 2019 · PatentDesigned, not yet built
- STM-D-0063Wave resonance of light and gravitational waves (the Gertsenshtein effect)M. E. Gertsenshtein · 1962 · PaperPublished and peer-reviewed
- STM-D-0067Experimental Spacetime Distortion: Generating Gravitational Waves in the LaboratoryChance Michael Glenn · 2025 · PaperOn the bench now
- STM-D-0183DIRD The Role of Superconductors in Gravity ResearchDIA / AAWSAP contractor · 2010 · ReportWhat to watch
- STM-D-0280Experimental Detection of the Gravitomagnetic London MomentM. Tajmar, F. Plesescu, K. Marhold · 2006 · PaperWhat to watch
- STM-D-0300DIRD Antigravity for Aerospace ApplicationsDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0326Cavity-enhanced superconductivity in the two-dimensional limit of NbSe2Hanxiang Zhang, Zexin Feng, I-Te Lu · 2026 · PaperPublished and peer-reviewed
- STM-D-0347Investigation of the Alzofon weight reduction experiment using NMR spectroscopyWilly Stark, Hans-Joachim Grafe, Martin Tajmar · 2024 · PaperPublished and peer-reviewed
- STM-D-0377DIRD High-Frequency Gravitational Wave CommunicationsDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0382Electro-Magnetic Motor (US Patent 382,279)Nikola Tesla · 1888 · PatentSettled physics
- STM-D-0410Detecting high-frequency gravitational waves with microwave cavitiesAsher Berlin, Diego Blas, Raffaele Tito D’Agnolo · 2022 · PaperPublished and peer-reviewed
- STM-D-0414Electromagnetic to Gravitational wave Conversion via Nuclear HolonomyGiorgio Fontana, Bernd Binder, Glen A. Robertson · 2009 · PaperWhat to watch
- STM-D-0438Applications of High-Frequency Gravitational Waves (HFGWs)Robert M. L. Baker, Jr. · 2005 · PaperWhat to watch
- STM-D-0475Electromagnetic response of gravitational waves passing through an alternating magnetic field: A scheme to probe high-frequency gravitational wavesH. Zheng, L. F. Wei, H. Wen · 2018 · PaperDesigned, not yet built
- STM-D-0476Cavity-enhanced superconducting response in an underdoped cuprateAngela Montanaro, Vadim Plastovets, Nitesh Khatiwada · 2026 · PaperOn the bench now
- STM-D-0478Challenges and opportunities of gravitational-wave searches at MHz to GHz frequenciesNancy Aggarwal, Odylio D. Aguiar, Andreas Bauswein · 2021 · PaperOn the bench now
- STM-D-0479A Fourier-Bessel transform method for efficiently calculating the magnetic field of solenoidsJack Nachamkin, C. J. Maggiore · 1980 · PaperSettled physics
- STM-D-0482Anomalous weight reduction on a gyroscope’s right rotations around the vertical axis on the EarthHideo Hayasaka, Sakae Takeuchi · 1989 · PaperWhat to watch
- STM-D-0503Electrically tunable moiré magnetism in twisted double bilayers of chromium triiodideGuanghui Cheng, Mohammad Mushfiqur Rahman, Andres Llacsahuanga Allcca · 2023 · PaperPublished and peer-reviewed
- STM-D-0506Evidence for vacuum-enhanced superconductivity in NbSe2Zheyan Wang, Gabriel Cardoso, Liu Yang · 2026 · PaperPublished and peer-reviewed
- STM-D-0510Experimental Considerations in Superconductor Gravity ExperimentsGeorge Hathaway, Harald Reiss · 2012 · PaperPublished and peer-reviewed
- STM-D-0535A test of general relativity using the LARES and LAGEOS satellites and a GRACE Earth gravity modelIgnazio Ciufolini, Antonio Paolozzi, Erricos C. Pavlis · 2016 · PaperSettled physics
- STM-D-0538A comment on “A test of general relativity using the LARES and LAGEOS satellites and a GRACE Earth gravity model”, by I. Ciufolini et al.Lorenzo Iorio · 2017 · PaperWhat to watch
- STM-D-0540Design of a Quantum Source of High-Frequency Gravitational Waves (HFGW) and Test MethodologyGiorgio Fontana · 2004 · PaperDesigned, not yet built
- STM-D-0547Fabrication of large bulk ceramic superconductor disks for gravity modification experiments and performance of YBCO disks under EM field excitationRonald Koczor, David Noever · 1999 · PaperPublished and peer-reviewed
- STM-D-0550Gravity-Superconductors Interactions: Theory and ExperimentGiovanni Modanese, Glen A. Robertson · 2012 · BookPublished and peer-reviewed
- STM-D-0553Interactions Between Superconductors and High-Frequency Gravitational WavesR. C. Woods · 2012 · PaperWhat to watch
- STM-D-0562Theoretical Study of Anomalous Forces Externally Induced by SuperconductorsElio B. Porcelli, Victo S. Filho · 2017 · PaperPublished and peer-reviewed
- STM-D-0571Proposed Ultra-High Sensitivity High-Frequency Gravitational Wave DetectorRobert M. L. Baker Jr., Gary V. Stephenson, Fangyu Li · 2008 · PaperDesigned, not yet built
- STM-D-0576High-Frequency Gravitational Wave Induced Nuclear FusionGiorgio Fontana, Robert M. L. Baker, Jr. · 2007 · PaperDesigned, not yet built
- STM-D-0581Gravitational Wave Generator ApparatusRobert M.L. Baker, Bonnie Sue Baker · 2012 · PaperDesigned, not yet built
- STM-D-0585Interaction of gravitational waves with superconductorsN. A. Inan, J. J. Thompson, R. Y. Chiao · 2016 · PaperPublished and peer-reviewed
- STM-D-0591Measurement of Gravitomagnetic and Acceleration Fields around Rotating SuperconductorsMartin Tajmar, Florin Plesescu, Bernhard Seifert · 2007 · PaperWhat to watch
- STM-D-0594Exploring Superconductivity under Strong Coupling with the Vacuum Electromagnetic FieldAnoop Thomas, Eloïse Devaux, Kalaivanan Nagarajan · 2019 · PaperPublished and peer-reviewed
- STM-D-0598Symmetries and selection rules: optimising axion haloscopes for Gravitational Wave searchesValerie Domcke, Camilo Garcia-Cely, Sung Mook Lee · 2024 · PaperPublished and peer-reviewed
- STM-D-0605Gravitational effects on the magnetic attenuation of superconductorsNing Li, D. G. Torr · 1992 · PaperPublished and peer-reviewed
- STM-D-0635Room Temperature Superconducting System for use on a Hybrid Aerospace-Undersea CraftSalvatore C. Pais · 2019 · PaperDesigned, not yet built
- STM-D-0655Gedanken Experiment (Thought Experiment) about Gravo-Electric and Gravo-Magnetic Fields, and the Link to Gravitons and Gravitational Waves in the Early UniverseAndrew Walcott Beckwith · 2016 · PaperPublished and peer-reviewed
- STM-D-0664Potential of Radio Telescopes as High-Frequency Gravitational Wave DetectorsValerie Domcke, Camilo Garcia-Cely · 2021 · PaperPublished and peer-reviewed
- STM-D-0670The Tajmar effect from quantised inertiaM. E. McCulloch · 2011 · PaperPublished and peer-reviewed
- STM-D-0685Gravitational Wave PropulsionGiorgio Fontana · 2005 · PaperDesigned, not yet built
- STM-D-0698Gravitomagnetic London moment and the graviton mass inside a superconductorC.J. de Matos, M. Tajmar · 2005 · PaperWhat to watch
- STM-D-0705Gravitoelectromagnetism: A Brief ReviewBahram Mashhoon · 2003 · PaperSettled physics
- STM-D-0739Gravity modification experiment using a rotating superconducting disk and radio frequency fieldsG. Hathaway, B. Cleveland, Y. Bao · 2003 · PaperPublished and peer-reviewed
- STM-D-0750High-frequency gravitational waves having large spectral densities and their electromagnetic responseFang-Yu Li, Hao Wen, Zhen-Yun Fang · 2013 · PaperDesigned, not yet built
- STM-D-0757Gravitomagnetic field of a rotating superconductor and of a rotating superfluidMartin Tajmar, Clovis J. de Matos · 2003 · PaperWhat to watch
- STM-D-0810Relic High Frequency gravitational waves, neutrino physics, and icecubeAndrew Beckwith, Glen A. Robertson · 2009 · PaperWhat to watch
- STM-D-0817Signal photon flux and background noise in a coupling electromagnetic detecting system for high-frequency gravitational wavesFangyu Li, Nan Yang, Zhenyun Fang · 2009 · PaperDesigned, not yet built
- STM-D-0818Relic High Frequency Gravitational waves from the Big Bang and How to Detect ThemAndrew Beckwith, Glen A. Robertson · 2009 · PaperWhat to watch
- STM-D-0829Interaction Between Macroscopic Quantum Systems and GravityA. Gallerati, G. Modanese, G.A. Ummarino · 2022 · PaperPublished and peer-reviewed
- STM-D-0842Stimulated Emission of Gravitational Waves via Dissimilar Superconducting Josephson JunctionsGary V. Stephenson · 2026 · PaperDesigned, not yet built
- STM-D-0873Novel Search for High-Frequency Gravitational Waves with Low-Mass Axion HaloscopesValerie Domcke, Camilo Garcia-Cely, Nicholas L. Rodd · 2022 · PaperPublished and peer-reviewed
- STM-D-0890Investigation of High Voltage Discharges in Low Pressure Gases Through Large Ceramic Superconducting ElectrodesEvgeny Podkletnov, Giovanni Modanese · 2003 · PaperPublished and peer-reviewed
- STM-D-0892Interaction between superconductors and weak gravitational fieldAntonio Gallerati · 2020 · PaperPublished and peer-reviewed
- STM-D-0900The Chiao Gravity-Superconductor EM Transducer: An OverviewR. A. Lewis · 2012 · PaperWhat to watch
- STM-D-0906The SpaceDrive project – Developing revolutionary propulsion at TU DresdenMartin Tajmar, Matthias Kößling, Marcel Weikert · 2018 · PaperOn the bench now
- STM-D-0916Light-Induced Superconductivity in a Stripe-Ordered CuprateD. Fausti, R. I. Tobey, N. Dean · 2011 · PaperPublished and peer-reviewed
- STM-D-0956Nonlinear lattice dynamics as a basis for enhanced superconductivity in YBa2Cu3O6.5Roman Mankowsky, Alaska Subedi, M. Först · 2014 · PaperPublished and peer-reviewed
- STM-D-0985The Morningstar Energy BoxPaul Murad, Morgan Boardman, John Brandenburg · 2012 · PaperOn the bench now
- STM-D-1020Do Mirrors for Gravitational Waves Exist?Stephen J. Minter, Kirk Wegter-McNelly, Raymond Y. Chiao · 2009 · PaperPublished and peer-reviewed
- STM-D-1038Laboratory-Scale Superconducting Mirrors for Gravitational MicrowavesRaymond Y. Chiao, Stephen J. Minter, Kirk Wegter-McNelly · 2009 · PaperDesigned, not yet built
- STM-D-1071On the gravitational radiation of gravitating objectsArbab I. Arbab · 2009 · PaperPublished and peer-reviewed
12 Inertial mass reduction, the Navy patents and transmedium craft
- STM-D-0002Craft using an inertial mass reduction deviceSalvatore Cezar Pais, US Department of Navy · 2016 · PatentDesigned, not yet built
- STM-D-0003High frequency gravitational wave generatorSalvatore Cezar Pais, US Department of Navy · 2017 · PatentDesigned, not yet built
- STM-D-0012Electromagnetic field generator and method to generate an electromagnetic fieldSalvatore Pais, US Department of Navy · 2015 · PatentDesigned, not yet built
- STM-D-0018Inertia as a zero-point-field Lorentz forceBernard Haisch, Alfonso Rueda, Harold E. Puthoff · 1994 · PaperPublished and peer-reviewed
- STM-D-0030Systems and methods for generating coherent matterwave beamsMoe J. ARMAN, Charles Chase, Lockheed Martin Corp · 2011 · PatentDesigned, not yet built
- STM-D-0032The Sheehy “operability” attestation (FOIA docs)The War Zone / J. Sheehy · 2020 · ReportWhat to watch
- STM-D-0039On gauge invariance and vacuum polarization (Schwinger limit)Julian Schwinger · 1951 · PaperSettled physics
- STM-D-0044The possibility of FTL space travel by using the quantum tunneling effect through the light barrierTakaaki Musha · 2017 · PaperWhat to watch
- STM-D-0046System and method for generating forces using asymmetrical electrostatic pressureAndrew Neil Aurigema, Charles Raymond Buhler, IV, Individual · 2019 · PatentOn the bench now
- STM-D-0050Plasma Compression Fusion DeviceSalvatore Pais, US Department of Navy · 2018 · PatentDesigned, not yet built
- STM-D-0057Piezoelectricity-induced High Temperature SuperconductorSalvatore Cezar Pais, US Department of Navy · 2019 · PatentDesigned, not yet built
- STM-D-0059Estimating flight characteristics of anomalous unidentified aerial vehiclesKevin H. Knuth, Robert M. Powell, Peter A. Reali · 2019 · PaperPublished and peer-reviewed
- STM-D-0072System and Method for Generating Forces Using Asymmetrical Electrostatic Pressure (continuation)Andrew Neil Aurigema, Charles Raymond Buhler, IV · 2024 · PatentOn the bench now
- STM-D-0078Magnetohydrodynamic propulsion apparatusJames F. King, Jr. · 1964 · PatentDesigned, not yet built
- STM-D-0188DIRD Cockpits in the Era of Breakthrough FlightDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0302DIRD Pulsed High-Power Microwave Source TechnologyDIA / AAWSAP contractor · 2010 · ReportSettled physics
- STM-D-0307DIRD Detection and High Resolution Tracking of Vehicles at Hypersonic VelocitiesDIA / AAWSAP contractor · 2010 · ReportPublished and peer-reviewed
- STM-D-0322Method for Creating a Rapidly Changing Energy Shell of Quantum Fluctuations About Masses for Acceleration Without Mass EjectionGlen A. Robertson · 2023 · PatentDesigned, not yet built
- STM-D-0389A hybrid craft using an inertial mass modification deviceSalvatore Cezar Pais · 2017 · PaperDesigned, not yet built
- STM-D-0413EmDrive: Advances in Spacecraft Thrusters and Propulsion SystemsRoger Shawyer · 2023 · BookDesigned, not yet built
- STM-D-0486Anomalous Thrust Production from an RF Test Device Measured on a Low-Thrust Torsion PendulumDavid A. Brady, Harold G. White, Paul March · 2014 · PaperWhat to watch
- STM-D-0526Engineering the Zero-Point Field and Polarizable Vacuum For Interstellar FlightH. E. Puthoff, S. R. Little, M. Ibison · 2002 · PaperWhat to watch
- STM-D-0529Direct Thrust Measurements of an EMDrive and Evaluation of Possible Side-EffectsMartin Tajmar, Georg Fiedler · 2015 · PaperPublished and peer-reviewed
- STM-D-0561High-accuracy thrust measurements of the EMDrive and elimination of false-positive effectsM. Tajmar, O. Neunzig, M. Weikert · 2021 · PaperPublished and peer-reviewed
- STM-D-0635Room Temperature Superconducting System for use on a Hybrid Aerospace-Undersea CraftSalvatore C. Pais · 2019 · PaperDesigned, not yet built
- STM-D-0715Testing quantised inertia on the emdriveM. E. McCulloch · 2015 · PaperPublished and peer-reviewed
- STM-D-0716Theory of a Mach Effect Thruster IHeidi Fearn, Adam Zachar, Keith Wanser · 2015 · PaperOn the bench now
- STM-D-0736The SpaceDrive project - Thrust balance development and new measurements of the Mach-Effect and EMDrive ThrustersMatthias Kößling, Maxime Monette, Marcel Weikert · 2019 · PaperPublished and peer-reviewed
- STM-D-0759The Plasma Compression Fusion Device—Enabling Nuclear Fusion IgnitionSalvatore Cezar Pais · 2019 · PaperDesigned, not yet built
- STM-D-0803Theory of a Mach Effect ThrusterHeidi Fearn, James F. Woodward, Keith Wanser · 2014 · PaperOn the bench now
- STM-D-0848The new science of Unidentified Aerospace-Undersea Phenomena (UAP)Kevin H. Knuth, Philippe Ailleris, Hussein Ali Agrama · 2025 · PaperPublished and peer-reviewed
- STM-D-0851Initial results from the first field expedition of UAPx to study unidentified anomalous phenomenaMatthew Szydagis, Kevin H. Knuth, Benjamin Kugielsky · 2025 · PaperPublished and peer-reviewed
- STM-D-0906The SpaceDrive project – Developing revolutionary propulsion at TU DresdenMartin Tajmar, Matthias Kößling, Marcel Weikert · 2018 · PaperOn the bench now
- STM-D-0914A new experimental approach to Mach's principle and relativistic gravitationJames F. Woodward · 1990 · PaperPublished and peer-reviewed
- STM-D-0934Interplanetary missions with the GDM propulsion systemWilliam Emrich, Terry Kammash · 1998 · PaperDesigned, not yet built
- STM-D-0949Project Orion and Future Prospects for Nuclear Pulse PropulsionG. R. Schmidt, J. A. Bonometti, C. A. Irvine · 2002 · PaperDesigned, not yet built
- STM-D-0951Using VASIMR® for the Proposed Europa MissionEdgar A. Bering III, Matthew Giambusso, Mark Carter · 2014 · PaperDesigned, not yet built
- STM-D-0977SUPERFORCE – the Fundamental Force of UnificationSalvatore Cezar Pais · 2023 · PaperWhat to watch
- STM-D-0980Centauri Dreams: Imagining and Planning Interstellar ExplorationPaul Gilster · 2004 · BookDesigned, not yet built
- STM-D-0994Generalized Lawson criterion for magnetic fusion applications in spaceDejan Petkow, Roland A. Gabrielli, Georg Herdrich · 2012 · PaperPublished and peer-reviewed
- STM-D-1008Propulsion and Power Generation Capabilities of a Dense Plasma Focus (DPF) Fusion System for Future Military Aerospace VehiclesSean D. Knecht, Robert E. Thomas, Franklin B. Mead · 2006 · PaperDesigned, not yet built
- STM-D-1014Vortex Formation in the Wake of Dark Matter PropulsionGlen A. Robertson, Mário J. Pinheiro · 2011 · PaperPublished and peer-reviewed
- STM-D-1021Making Starships and Stargates: The Science of Interstellar Transport and Absurdly Benign WormholesJames F. Woodward · 2013 · BookOn the bench now
- STM-D-1032Fusion-electric propulsion for hypersonic flightH. David Froning Jr., Robert W. Bussard · 1993 · PaperDesigned, not yet built
- STM-D-1043Human outer solar system exploration via Q-Thruster technologyB. Kent Joosten, Harold G. White · 2015 · PaperDesigned, not yet built
- STM-D-1047Nuclear systems for Mars explorationTibor S. Balint · 2004 · PaperPublished and peer-reviewed
- STM-D-1049Z-Pinch fusion-based nuclear propulsionJanie H. Miernik, Geoffrey Statham, Leo Fabisinski · 2013 · PaperDesigned, not yet built
- STM-D-1057Prospects for Breakthrough Propulsion From PhysicsMarc G. Millis · 2004 · ReportPublished and peer-reviewed
- STM-D-1061Inertial Confinement Fusion Propulsion for Deep Space Missions RevisitedGeorge H. Miley, Xiaoling Yang, Kirk Flippo · 2010 · PaperDesigned, not yet built
- STM-D-1080Radiation shielding calculations for the VISTA spacecraftSümer Şahin, Hacı Mehmet Şahin, Adem Acır · 2005 · PaperDesigned, not yet built
13 The metric, warp drives and wormholes
- STM-D-0025Warp Field Mechanics 101White, Harold · 2011 · ReportOn the bench now
- STM-D-0044The possibility of FTL space travel by using the quantum tunneling effect through the light barrierTakaaki Musha · 2017 · PaperWhat to watch
- STM-D-0062Frontiers of Propulsion ScienceMarc G. Millis, Eric W. Davis · 2009 · BookPublished and peer-reviewed
- STM-D-0067Experimental Spacetime Distortion: Generating Gravitational Waves in the LaboratoryChance Michael Glenn · 2025 · PaperOn the bench now
- STM-D-0189DIRD Invisibility Cloaking: Theory and ExperimentsDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0192DIRD Advanced Space Propulsion Based on Vacuum (Spacetime Metric) EngineeringHarold E. Puthoff, DIA / AAWSAP contractor · 2010 · ReportPublished and peer-reviewed
- STM-D-0284DIRD Warp Drive Dark energy and the Manipulation of Extra DimensionsRichard K. Obousy, Eric W. Davis, DIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0301Generic warp drives violate the null energy conditionJessica Santiago, Sebastian Schuster, Matt Visser · 2021 · PaperPublished and peer-reviewed
- STM-D-0312Advanced Space Propulsion Based on Vacuum (Spacetime Metric) EngineeringHarold E. Puthoff · 2010 · PaperPublished and peer-reviewed
- STM-D-0314Polarizable-Vacuum (PV) representation of general relativityH. E. Puthoff · 1999 · PaperPublished and peer-reviewed
- STM-D-0319The unphysical nature of "Warp Drive"Michael J. Pfenning, L. H. Ford · 1997 · PaperPublished and peer-reviewed
- STM-D-0355Introducing Physical Warp DrivesAlexey Bobrick, Gianni Martire · 2021 · PaperPublished and peer-reviewed
- STM-D-0380The warp drive: hyper-fast travel within general relativityMiguel Alcubierre · 1994 · PaperPublished and peer-reviewed
- STM-D-0385Analyzing warp drive spacetimes with Warp FactoryChristopher Helmerich, Jared Fuchs, Alexey Bobrick · 2024 · PaperPublished and peer-reviewed
- STM-D-0386Alcubierre warp drive in Bohmian Quantum GravitySijo K. Joseph · 2023 · PaperPublished and peer-reviewed
- STM-D-0405Exploring particle geodesics in a warp drive spacetimeLucas Timotheo Sanches, Max Morris, Steven R Brandt · 2026 · PaperPublished and peer-reviewed
- STM-D-0408Superluminal subway: The Krasnikov tubeAllen E. Everett, Thomas A. Roman · 1997 · PaperPublished and peer-reviewed
- STM-D-0425A Novel View of Spacetime Permitting Faster-Than-Light TravelGregory V. Meholic · 2004 · PaperWhat to watch
- STM-D-0435A “warp drive” with more reasonable total energy requirementsChris Van Den Broeck · 1999 · PaperPublished and peer-reviewed
- STM-D-0445Dust content solutions for the Alcubierre warp drive spacetimeOsvaldo L. Santos-Pereira, Everton M. C. Abreu, Marcelo B. Ribeiro · 2020 · PaperPublished and peer-reviewed
- STM-D-0459Constant velocity physical warp drive solutionJared Fuchs, Christopher Helmerich, Alexey Bobrick · 2024 · PaperPublished and peer-reviewed
- STM-D-0463Curvature Invariants for the Alcubierre and Natário Warp DrivesBrandon Mattingly, Abinash Kar, Matthew Gorban · 2021 · PaperPublished and peer-reviewed
- STM-D-0467Breaking the Warp Barrier: Hyper-Fast Solitons in Einstein-Maxwell-Plasma TheoryErik W. Lentz · 2021 · PaperPublished and peer-reviewed
- STM-D-0490Conformal Gravity and the Alcubierre Warp Drive MetricGabriele U. Varieschi, Zily Burstein · 2013 · PaperPublished and peer-reviewed
- STM-D-0519Black strings and p-branes are unstableRuth Gregory, Raymond Laflamme · 1993 · PaperPublished and peer-reviewed
- STM-D-0526Engineering the Zero-Point Field and Polarizable Vacuum For Interstellar FlightH. E. Puthoff, S. R. Little, M. Ibison · 2002 · PaperWhat to watch
- STM-D-0532Active control of electromagnetically induced transparency analogue in terahertz metamaterialsJianqiang Gu, Ranjan Singh, Xiaojun Liu · 2012 · PaperPublished and peer-reviewed
- STM-D-0535A test of general relativity using the LARES and LAGEOS satellites and a GRACE Earth gravity modelIgnazio Ciufolini, Antonio Paolozzi, Erricos C. Pavlis · 2016 · PaperSettled physics
- STM-D-0539Einstein's equations in electromagnetic mediaEren Erberk Erkul, Ulf Leonhardt · 2026 · PaperPublished and peer-reviewed
- STM-D-0543ADM mass in warp drive spacetimesSebastian Schuster, Jessica Santiago, Matt Visser · 2023 · PaperPublished and peer-reviewed
- STM-D-0558Perfect fluid warp drive solutions with the cosmological constantOsvaldo L. Santos-Pereira, Everton M. C. Abreu, Marcelo B. Ribeiro · 2021 · PaperPublished and peer-reviewed
- STM-D-0560Space coupling by specially conditioned electromagnetic fieldsH. D. Froning, Terence W. Barrett · 1998 · PaperPublished and peer-reviewed
- STM-D-0574Warp Drive: A New ApproachRichard K. Obousy, Gerald B. Cleaver · 2007 · PaperPublished and peer-reviewed
- STM-D-0577Worldline numerics applied to custom Casimir geometry generates unanticipated intersection with Alcubierre warp metricHarold White, Jerry Vera, Arum Han · 2021 · PaperPublished and peer-reviewed
- STM-D-0592Tolman-like temperature gradients in stationary spacetimesJessica Santiago, Matt Visser · 2018 · PaperPublished and peer-reviewed
- STM-D-0616Semiclassical instability of dynamical warp drivesStefano Finazzi, Stefano Liberati, Carlos Barceló · 2009 · PaperPublished and peer-reviewed
- STM-D-0622On the (im)possibility of warp bubblesChris Van Den Broeck · 1999 · PaperWhat to watch
- STM-D-0625Positive energy warp drive from hidden geometric structuresShaun D B Fell, Lavinia Heisenberg · 2021 · PaperPublished and peer-reviewed
- STM-D-0632Warp drive with zero expansionJosé Natário · 2002 · PaperPublished and peer-reviewed
- STM-D-0634Warp Factory: A Numerical Toolkit for the Analysis and Optimization of Warp Drive GeometriesChristopher Helmerich, Jared Fuchs, Alexey Bobrick · 2023 · PaperPublished and peer-reviewed
- STM-D-0656Fluid dynamics in the warp drive spacetime geometryOsvaldo L. Santos-Pereira, Everton M. C. Abreu, Marcelo B. Ribeiro · 2021 · PaperPublished and peer-reviewed
- STM-D-0671Superluminal Travel Requires Negative EnergiesKen D. Olum · 1998 · PaperPublished and peer-reviewed
- STM-D-0676Hyperfast travel in general relativityS. V. Krasnikov · 1998 · PaperPublished and peer-reviewed
- STM-D-0677Modifications to The Alcubierre Warp Field Metric in Anisotropic Matter and Implications to Detection of Warp FieldsTravis S. Taylor · 2024 · PaperPublished and peer-reviewed
- STM-D-0685Gravitational Wave PropulsionGiorgio Fontana · 2005 · PaperDesigned, not yet built
- STM-D-0701Warp drive space-timePedro F. González-Díaz · 2000 · PaperPublished and peer-reviewed
- STM-D-0702Supersymmetry Breaking Casimir Warp DriveRichard K. Obousy, Gerald B. Cleaver · 2007 · PaperPublished and peer-reviewed
- STM-D-0720Visualization and analysis of the curvature invariants in the Alcubierre warp-drive spacetimeJosé Rodal · 2023 · PaperPublished and peer-reviewed
- STM-D-0741On the Wormhole–Warp Drive CorrespondenceRemo Garattini, Kirill Zatrimaylov · 2024 · PaperWhat to watch
- STM-D-0772Motivating Emissions from Positive Energy Warp BubblesErik W. Lentz, Ryan C. Felton · 2024 · PaperDesigned, not yet built
- STM-D-0779Warp drive basicsMiguel Alcubierre, Francisco S. N. Lobo · 2017 · PaperPublished and peer-reviewed
- STM-D-0781Alcubierre warp drive: On the matter of matterBrendan McMonigal, Geraint F. Lewis, Philip O’Byrne · 2012 · PaperPublished and peer-reviewed
- STM-D-0813Warp drives and Martel–Poisson chartsAbhishek Chowdhury · 2025 · PaperPublished and peer-reviewed
- STM-D-0823Newtonian limits of warp drive spacetimesJosé Natário · 2006 · PaperPublished and peer-reviewed
- STM-D-0844Quantum tunneling and quasinormal modes in the spacetime of the Alcubierre warp driveKimet Jusufi, İzzet Sakallı, Ali Övgün · 2017 · PaperPublished and peer-reviewed
- STM-D-0866Unlabored system motion by specially conditioned electromagnetic fields in higher dimensional realmsH. David Froning Jr., Gregory V. Meholic, Glen A. Robertson · 2010 · PaperWhat to watch
- STM-D-0871Warp drive aerodynamicsCarlos Barceló, Valentin Boyanov, Luis J. Garay · 2022 · PaperPublished and peer-reviewed
- STM-D-0898Warp drive and causalityAllen E. Everett · 1996 · PaperPublished and peer-reviewed
- STM-D-0903Fundamental limitations on ‘warp drive’ spacetimesFrancisco S. N. Lobo, Matt Visser · 2004 · PaperPublished and peer-reviewed
- STM-D-0933Time Travel and Warp Drives: A Scientific Guide to Shortcuts through Time and SpaceAllen Everett, Thomas Roman · 2011 · BookPublished and peer-reviewed
- STM-D-0970Breaking spacetimePablo G Tello, Imogen Strong · 2025 · PaperWhat to watch
- STM-D-0984Investigation into Compactified Dimensions: Casimir Energies and Phenomenological AspectsRichard K. Obousy · 2009 · PaperPublished and peer-reviewed
- STM-D-1009Casimir Energy and Brane StabilityRichard Obousy, Gerald Cleaver · 2008 · PaperPublished and peer-reviewed
- STM-D-1024FTL Quantum Models of the Photon and the ElectronRichard F. Gauthier · 2007 · PaperWhat to watch
- STM-D-1036Interstellar travel by means of Wormhole Induction Propulsion (WHIP)Eric W. Davis · 1998 · PaperDesigned, not yet built
- STM-D-1044Polarizable-Vacuum Approach to General RelativityHarold E. Puthoff · 2002 · PaperPublished and peer-reviewed
- STM-D-1045Polarizable-Vacuum (PV) Approach to General RelativityHarold E. Puthoff · 2002 · PaperPublished and peer-reviewed
- STM-D-10552 + 1 dimensional gravity as an exactly soluble systemEdward Witten · 1988 · PaperSettled physics
- STM-D-1064Cosmology and the Door to Other Dimensions and UniversesRobert M. L. Baker, Jr., Paul Murad · 2003 · PaperWhat to watch
- STM-D-1079Overcoming the Negative Energy Density Requirements in the Alcubierre Warp Field Equations with a Complex Shaping FunctionChance M. Glenn · 2026 · PaperDesigned, not yet built
- STM-D-1093Transformation Optics and the Geometry of LightUlf Leonhardt, Thomas G. Philbin · 2008 · PaperPublished and peer-reviewed
14 Wormholes, energy conditions and the negative-energy budget
- STM-D-0025Warp Field Mechanics 101White, Harold · 2011 · ReportOn the bench now
- STM-D-0036Teleportation Physics StudyEric W. Davis · 2004 · ReportDesigned, not yet built
- STM-D-0061Wormholes in spacetime and their use for interstellar travelMichael S. Morris, Kip S. Thorne · 1988 · PaperPublished and peer-reviewed
- STM-D-0075DIRD Quantum Tomography of Negative Energy States in the VacuumDIA / AAWSAP contractor · 2011 · ReportDesigned, not yet built
- STM-D-0190DIRD Traversable Wormholes, Stargates, and Negative EnergyEric W. Davis, DIA / AAWSAP contractor · 2010 · ReportPublished and peer-reviewed
- STM-D-0301Generic warp drives violate the null energy conditionJessica Santiago, Sebastian Schuster, Matt Visser · 2021 · PaperPublished and peer-reviewed
- STM-D-0319The unphysical nature of "Warp Drive"Michael J. Pfenning, L. H. Ford · 1997 · PaperPublished and peer-reviewed
- STM-D-0354DIRD Negative mass PropulsionDIA / AAWSAP contractor · 2011 · ReportWhat to watch
- STM-D-0355Introducing Physical Warp DrivesAlexey Bobrick, Gianni Martire · 2021 · PaperPublished and peer-reviewed
- STM-D-0385Analyzing warp drive spacetimes with Warp FactoryChristopher Helmerich, Jared Fuchs, Alexey Bobrick · 2024 · PaperPublished and peer-reviewed
- STM-D-0386Alcubierre warp drive in Bohmian Quantum GravitySijo K. Joseph · 2023 · PaperPublished and peer-reviewed
- STM-D-0400Energy conditions in general relativity and quantum field theoryEleni-Alexandra Kontou, Ko Sanders · 2020 · PaperPublished and peer-reviewed
- STM-D-0407A general worldline quantum inequalityChristopher J. Fewster · 2000 · PaperPublished and peer-reviewed
- STM-D-0408Superluminal subway: The Krasnikov tubeAllen E. Everett, Thomas A. Roman · 1997 · PaperPublished and peer-reviewed
- STM-D-0435A “warp drive” with more reasonable total energy requirementsChris Van Den Broeck · 1999 · PaperPublished and peer-reviewed
- STM-D-0441Averaged energy conditions and quantum inequalitiesL. H. Ford, Thomas A. Roman · 1995 · PaperPublished and peer-reviewed
- STM-D-0459Constant velocity physical warp drive solutionJared Fuchs, Christopher Helmerich, Alexey Bobrick · 2024 · PaperPublished and peer-reviewed
- STM-D-0460Averaged null energy condition in a classical curved backgroundEleni-Alexandra Kontou, Ken D. Olum · 2013 · PaperPublished and peer-reviewed
- STM-D-0527Can a wormhole supported by only small amounts of exotic matter really be traversable?Peter K. F. Kuhfittig · 2003 · PaperPublished and peer-reviewed
- STM-D-0543ADM mass in warp drive spacetimesSebastian Schuster, Jessica Santiago, Matt Visser · 2023 · PaperPublished and peer-reviewed
- STM-D-0559Restrictions on negative energy density in flat spacetimeL. H. Ford, Thomas A. Roman · 1997 · PaperPublished and peer-reviewed
- STM-D-0563Quantum Inequality Restrictions on Negative Energy Densities in Curved SpacetimesMichael John Pfenning, L. H. Ford · 1998 · PaperPublished and peer-reviewed
- STM-D-0575The generalized second law implies a quantum singularity theoremAron C. Wall · 2013 · PaperPublished and peer-reviewed
- STM-D-0615Wormholes supported by a phantom energySergey V. Sushkov · 2005 · PaperPublished and peer-reviewed
- STM-D-0616Semiclassical instability of dynamical warp drivesStefano Finazzi, Stefano Liberati, Carlos Barceló · 2009 · PaperPublished and peer-reviewed
- STM-D-0622On the (im)possibility of warp bubblesChris Van Den Broeck · 1999 · PaperWhat to watch
- STM-D-0634Warp Factory: A Numerical Toolkit for the Analysis and Optimization of Warp Drive GeometriesChristopher Helmerich, Jared Fuchs, Alexey Bobrick · 2023 · PaperPublished and peer-reviewed
- STM-D-0641Quarks, magnetic monopoles and negative massF. Winterberg · 1975 · PaperWhat to watch
- STM-D-0671Superluminal Travel Requires Negative EnergiesKen D. Olum · 1998 · PaperPublished and peer-reviewed
- STM-D-0676Hyperfast travel in general relativityS. V. Krasnikov · 1998 · PaperPublished and peer-reviewed
- STM-D-0692Spatially averaged quantum inequalities do not exist in four-dimensional spacetimeL. H. Ford, Adam D. Helfer, Thomas A. Roman · 2002 · PaperPublished and peer-reviewed
- STM-D-0693The Return of the Singularities: Applications of the Smeared Null Energy ConditionBen Freivogel, Eleni-Alexandra Kontou, Dimitrios Krommydas · 2022 · PaperPublished and peer-reviewed
- STM-D-0721Traversable wormholes induced by stress energy conservation: combining Casimir energy with a scalar fieldRemo Garattini, Athanasios G. Tzikas · 2024 · PaperPublished and peer-reviewed
- STM-D-0724Quantum inequalities do not forbid spacetime shortcutsS. Krasnikov · 2003 · PaperPublished and peer-reviewed
- STM-D-0741On the Wormhole–Warp Drive CorrespondenceRemo Garattini, Kirill Zatrimaylov · 2024 · PaperWhat to watch
- STM-D-0760Wormholes, Time Machines, and the Weak Energy ConditionMichael S. Morris, Kip S. Thorne, Ulvi Yurtsever · 1988 · PaperPublished and peer-reviewed
- STM-D-0764Rotating traversable wormholesEdward Teo · 1998 · PaperPublished and peer-reviewed
- STM-D-0794On Quantum InequalitiesAdam D. Helfer · 1996 · PaperPublished and peer-reviewed
- STM-D-0801Scalar fields, energy conditions and traversable wormholesCarlos Barceló, Matt Visser · 2000 · PaperPublished and peer-reviewed
- STM-D-0838Traversable wormholes in four dimensionsJuan Maldacena, Alexey Milekhin, Fedor Popov · 2018 · PaperPublished and peer-reviewed
- STM-D-0839Null energy conditions in quantum field theoryChristopher J. Fewster, Thomas A. Roman · 2003 · PaperPublished and peer-reviewed
- STM-D-0849Traversable wormholes via a double trace deformationPing Gao, Daniel Louis Jafferis, Aron C. Wall · 2017 · PaperPublished and peer-reviewed
- STM-D-0870The quantum interest conjectureL. H. Ford, Thomas A. Roman · 1999 · PaperPublished and peer-reviewed
- STM-D-0888Quantum inequality in spacetimes with small curvatureEleni-Alexandra Kontou, Ken D. Olum · 2015 · PaperPublished and peer-reviewed
- STM-D-0903Fundamental limitations on ‘warp drive’ spacetimesFrancisco S. N. Lobo, Matt Visser · 2004 · PaperPublished and peer-reviewed
- STM-D-0933Time Travel and Warp Drives: A Scientific Guide to Shortcuts through Time and SpaceAllen Everett, Thomas Roman · 2011 · BookPublished and peer-reviewed
- STM-D-0935Lorentzian Wormholes: From Einstein to HawkingMatt Visser · 1996 · BookPublished and peer-reviewed
- STM-D-0944Collapsing stellar filament and exotic matter in Palatini f(R) gravityRubab Manzoor, Abdul Jawad, Muhammad Adeel · 2019 · PaperPublished and peer-reviewed
- STM-D-0953Experimental Concepts for Generating Negative Energy in the LaboratoryEric W. Davis, Harold E. Puthoff · 2006 · PaperDesigned, not yet built
- STM-D-1005Note on a thin-shell wormhole in extremal Reissner–Nordström geometryS. Habib Mazharimousavi, Mustafa Halilsoy · 2018 · PaperPublished and peer-reviewed
- STM-D-1028Topological Censorship and Chronology ProtectionJohn L. Friedman · 1997 · PaperPublished and peer-reviewed
- STM-D-1036Interstellar travel by means of Wormhole Induction Propulsion (WHIP)Eric W. Davis · 1998 · PaperDesigned, not yet built
- STM-D-1079Overcoming the Negative Energy Density Requirements in the Alcubierre Warp Field Equations with a Complex Shaping FunctionChance M. Glenn · 2026 · PaperDesigned, not yet built
- STM-D-1092Static and dynamic traversable wormholesJarosław P. Adamiak · 2008 · PaperPublished and peer-reviewed
15 Scalar waves and the field behind the fields
- STM-D-0006Excitation and use of guided surface wave modes on lossy mediaJames F. Corum, Kenneth L. Corum, CPG Technologies, LLC · 2018 · PatentWhat to watch
- STM-D-0030Systems and methods for generating coherent matterwave beamsMoe J. ARMAN, Charles Chase, Lockheed Martin Corp · 2011 · PatentDesigned, not yet built
- STM-D-0039On gauge invariance and vacuum polarization (Schwinger limit)Julian Schwinger · 1951 · PaperSettled physics
- STM-D-0040Significance of EM potentials in quantum theory (Aharonov–Bohm)Aharonov, Bohm · 1959 · PaperSettled physics
- STM-D-0063Wave resonance of light and gravitational waves (the Gertsenshtein effect)M. E. Gertsenshtein · 1962 · PaperPublished and peer-reviewed
- STM-D-0066On an expression of the EM field by two scalar potential functionsE. T. Whittaker · 1904 · PaperSettled physics
- STM-D-0382Electro-Magnetic Motor (US Patent 382,279)Nikola Tesla · 1888 · PatentSettled physics
- STM-D-0394Accurately predicting electron beam deflections in fringing fields of a solenoidChristof Baumgärtel, Ray T. Smith, Simon Maher · 2020 · PaperPublished and peer-reviewed
- STM-D-0406Evaluation of Electron Beam Deflections across a Solenoid Using Weber-Ritz and Maxwell-Lorentz ElectrodynamicsRay T. Smith, Fred P. M. Jjunju, Simon Maher · 2015 · PaperPublished and peer-reviewed
- STM-D-0414Electromagnetic to Gravitational wave Conversion via Nuclear HolonomyGiorgio Fontana, Bernd Binder, Glen A. Robertson · 2009 · PaperWhat to watch
- STM-D-0424Demonstration of single-electron buildup of an interference patternAkira Tonomura, Junji Endo, Tsuyoshi Matsuda · 1989 · PaperSettled physics
- STM-D-0438Applications of High-Frequency Gravitational Waves (HFGWs)Robert M. L. Baker, Jr. · 2005 · PaperWhat to watch
- STM-D-0455Deriving an Electric Wave Equation from Weber’s ElectrodynamicsQingsong Li, Simon Maher · 2023 · PaperPublished and peer-reviewed
- STM-D-0464Asymmetry and non-dispersivity in the Aharonov-Bohm effectMaria Becker, Giulio Guzzinati, Armand Béché · 2019 · PaperPublished and peer-reviewed
- STM-D-0475Electromagnetic response of gravitational waves passing through an alternating magnetic field: A scheme to probe high-frequency gravitational wavesH. Zheng, L. F. Wei, H. Wen · 2018 · PaperDesigned, not yet built
- STM-D-0478Challenges and opportunities of gravitational-wave searches at MHz to GHz frequenciesNancy Aggarwal, Odylio D. Aguiar, Andreas Bauswein · 2021 · PaperOn the bench now
- STM-D-0489A generalisation of classical electrodynamics for the prediction of scalar field effectsKoen J. van Vlaenderen · 2003 · PaperWhat to watch
- STM-D-0505A Charged Particle Model based on Weber Electrodynamics for Electron Beam Trajectories in Coil and Solenoid ElementsChristof Baumgärtel, Simon Maher · 2022 · PaperPublished and peer-reviewed
- STM-D-0520Evidence for Aharonov-Bohm effect with magnetic field completely shielded from electron waveAkira Tonomura, Nobuyuki Osakabe, Tsuyoshi Matsuda · 1986 · PaperSettled physics
- STM-D-0525Electrodynamic Aharonov-Bohm effectPablo L. Saldanha · 2023 · PaperPublished and peer-reviewed
- STM-D-0532Active control of electromagnetically induced transparency analogue in terahertz metamaterialsJianqiang Gu, Ranjan Singh, Xiaojun Liu · 2012 · PaperPublished and peer-reviewed
- STM-D-0560Space coupling by specially conditioned electromagnetic fieldsH. D. Froning, Terence W. Barrett · 1998 · PaperPublished and peer-reviewed
- STM-D-0565The Lorentz Force Exerted by the Aharonov—Bohm Flux LineAndrei Shelankov · 2002 · PaperPublished and peer-reviewed
- STM-D-0571Proposed Ultra-High Sensitivity High-Frequency Gravitational Wave DetectorRobert M. L. Baker Jr., Gary V. Stephenson, Fangyu Li · 2008 · PaperDesigned, not yet built
- STM-D-0579Topological schemes in spacetime for the electrodynamic Aharonov-Bohm effectP. L. Saldanha, H. Batelaan · 2025 · PaperPublished and peer-reviewed
- STM-D-0597Photon Mass and New Experimental Results on Longitudinal Displacements of Laser Beams near Total ReflectionLouis de Broglie, Jean Pierre Vigier · 1972 · PaperWhat to watch
- STM-D-0598Symmetries and selection rules: optimising axion haloscopes for Gravitational Wave searchesValerie Domcke, Camilo Garcia-Cely, Sung Mook Lee · 2024 · PaperPublished and peer-reviewed
- STM-D-0621General Classical ElectrodynamicsKoen J. van Vlaenderen · 2016 · PaperWhat to watch
- STM-D-0627Solar wind test of the de Broglie-Proca massive photon with Cluster multi-spacecraft dataAlessandro Retinò, Alessandro D.A.M. Spallicci, Andris Vaivads · 2016 · PaperPublished and peer-reviewed
- STM-D-0638The electrostatic Aharonov–Bohm effectGiorgio Matteucci, Giulio Pozzi · 1991 · PaperSettled physics
- STM-D-0651The Young-Feynman two-slits experiment with single electrons: Build-up of the interference pattern and arrival-time distribution using a fast-readout pixel detectorStefano Frabboni, Alessandro Gabrielli, Gian Carlo Gazzadi · 2012 · PaperSettled physics
- STM-D-0655Gedanken Experiment (Thought Experiment) about Gravo-Electric and Gravo-Magnetic Fields, and the Link to Gravitons and Gravitational Waves in the Early UniverseAndrew Walcott Beckwith · 2016 · PaperPublished and peer-reviewed
- STM-D-0657The Superposition Principle of Waves Not Fulfilled under M. W. Evans' O(3) HypothesisErhard Wielandt · 2006 · PaperPublished and peer-reviewed
- STM-D-0664Potential of Radio Telescopes as High-Frequency Gravitational Wave DetectorsValerie Domcke, Camilo Garcia-Cely · 2021 · PaperPublished and peer-reviewed
- STM-D-0687The importance of Weber-Maxwell electrodynamics in electrical engineeringSteffen Kühn · 2023 · PaperPublished and peer-reviewed
- STM-D-0697Spin-dependent two-color Kapitza-Dirac effectsS. McGregor, W. C.-W. Huang, B. A. Shadwick · 2015 · PaperDesigned, not yet built
- STM-D-0706Über die Fortpflanzung ebener elektromagnetischer Wellen längs einer ebenen Leiterfläche und ihre Beziehung zur drahtlosen TelegraphieJ. Zenneck · 1907 · PaperSettled physics
- STM-D-0719The Enigmatic PhotonMyron W. Evans, Jean-Pierre Vigier · 1999 · BookWhat to watch
- STM-D-0737Production and application of electron vortex beamsJ. Verbeeck, H. Tian, P. Schattschneider · 2010 · PaperSettled physics
- STM-D-0738Gauge invariance of the Aharonov-Bohm effect in a quantum electrodynamics frameworkPablo L. Saldanha · 2024 · PaperPublished and peer-reviewed
- STM-D-0750High-frequency gravitational waves having large spectral densities and their electromagnetic responseFang-Yu Li, Hao Wen, Zhen-Yun Fang · 2013 · PaperDesigned, not yet built
- STM-D-0754Theoretical Discovery, Experiment, and Controversy in the Aharonov-Bohm Effect: An Oral History InterviewYakir Aharonov, Guy Hetzroni · 2025 · PaperSettled physics
- STM-D-0761Resolving the paradox of unipolar induction: new experimental evidence on the influence of the test circuitChristof Baumgärtel, Simon Maher · 2022 · PaperPublished and peer-reviewed
- STM-D-0775New Diffraction Experiment on the Electrostatic Aharonov-Bohm EffectGiorgio Matteucci, Giulio Pozzi · 1985 · PaperSettled physics
- STM-D-0790Topological Foundations of ElectromagnetismTerence W. Barrett · 2008 · BookPublished and peer-reviewed
- STM-D-0793On the partial differential equations of mathematical physicsE. T. Whittaker · 1903 · PaperSettled physics
- STM-D-0805Observation of Aharonov-Bohm Effect by Electron HolographyAkira Tonomura, Tsuyoshi Matsuda, Ryo Suzuki · 1982 · PaperSettled physics
- STM-D-0806Foundations of Electromagnetism: A Review of Wilhelm Weber’s Electrodynamic Force LawChristof Baumgärtel, Simon Maher · 2022 · PaperPublished and peer-reviewed
- STM-D-0810Relic High Frequency gravitational waves, neutrino physics, and icecubeAndrew Beckwith, Glen A. Robertson · 2009 · PaperWhat to watch
- STM-D-0817Signal photon flux and background noise in a coupling electromagnetic detecting system for high-frequency gravitational wavesFangyu Li, Nan Yang, Zhenyun Fang · 2009 · PaperDesigned, not yet built
- STM-D-0818Relic High Frequency Gravitational waves from the Big Bang and How to Detect ThemAndrew Beckwith, Glen A. Robertson · 2009 · PaperWhat to watch
- STM-D-0846Macroscopic Test of the Aharonov-Bohm EffectAdam Caprez, Brett Barwick, Herman Batelaan · 2007 · PaperSettled physics
- STM-D-0856Extracting and Using Electromagnetic Energy from the Active VacuumThomas E. Bearden · 2003 · PaperWhat to watch
- STM-D-0857Magnetic force exerted by the Aharonov-Bohm lineA. L Shelankov · 1998 · PaperPublished and peer-reviewed
- STM-D-0866Unlabored system motion by specially conditioned electromagnetic fields in higher dimensional realmsH. David Froning Jr., Gregory V. Meholic, Glen A. Robertson · 2010 · PaperWhat to watch
- STM-D-0872Specially Conditioned EM Fields to Reduce Nuclear Fusion Input Energy NeedsH. David Froning Jr., Terence W. Barrett, George H. Miley · 2012 · PaperPublished and peer-reviewed
- STM-D-0873Novel Search for High-Frequency Gravitational Waves with Low-Mass Axion HaloscopesValerie Domcke, Camilo Garcia-Cely, Nicholas L. Rodd · 2022 · PaperPublished and peer-reviewed
- STM-D-0910Photon-induced near-field electron microscopyBrett Barwick, David J. Flannigan, Ahmed H. Zewail · 2009 · PaperSettled physics
- STM-D-0920Coherent control of plasma dynamics by feedback-optimized wavefront manipulationZ.-H. He, B. Hou, G. Gao · 2015 · PaperPublished and peer-reviewed
- STM-D-0938Manipulating Twisted Electron BeamsAlexander J. Silenko, Pengming Zhang, Liping Zou · 2017 · PaperPublished and peer-reviewed
- STM-D-0943Advances in QED with intense background fieldsA. Fedotov, A. Ilderton, F. Karbstein · 2023 · PaperPublished and peer-reviewed
- STM-D-0952Michael Faraday — Experimental Researches in Electricity (lines of force)Michael Faraday · 1855 · BookSettled physics
- STM-D-0958Relativistic laser-matter interaction: from attosecond pulse generation to fast ignitionG. A. Mourou, C. L. Labaune, Mike Dunne · 2007 · PaperDesigned, not yet built
- STM-D-0960Extremely high-intensity laser interactions with fundamental quantum systemsAntonino Di Piazza, Carsten Müller, Karen Z. Hatsagortsyan · 2012 · PaperPublished and peer-reviewed
- STM-D-0979On the Electromagnetic Origin of Inertia and Inertial MassAlexandre A. Martins, Mário J. Pinheiro · 2008 · PaperPublished and peer-reviewed
- STM-D-0983The transactional interpretation of quantum mechanicsJohn G. Cramer · 2001 · PaperPublished and peer-reviewed
- STM-D-0993Aharonov–Bohm Electrodynamics in Material Media: A Scalar e.m. Field Cannot Cause Dissipation in a MediumFernando Minotti, Giovanni Modanese · 2023 · PaperPublished and peer-reviewed
- STM-D-0999Volkov Solution for Two Laser Beams and ITERMiroslav Pardy · 2006 · PaperPublished and peer-reviewed
- STM-D-1010Laser-assisted ultrafast photoassociation in HeH2+Bo Y. Chang, Seokmin Shin, Jesús Santamaría · 2014 · PaperPublished and peer-reviewed
- STM-D-1011Attosecond coherent control of free-electron wave functions using semi-infinite light fieldsGiovanni Maria Vanacore, Ivan Madan, Gabriele Berruto · 2018 · PaperPublished and peer-reviewed
- STM-D-1017Attosecond light-pulse-induced photoassociationPaula Rivière, Camilo Ruiz, Jan-Michael Rost · 2008 · PaperPublished and peer-reviewed
- STM-D-1018Experimental investigation of an unusual induction effect and its interpretation as a necessary consequence of Weber electrodynamicsSteffen Kühn · 2021 · PaperPublished and peer-reviewed
- STM-D-1024FTL Quantum Models of the Photon and the ElectronRichard F. Gauthier · 2007 · PaperWhat to watch
- STM-D-1048Relativistic high-power laser–matter interactionsYousef I. Salamin, S.X. Hu, Karen Z. Hatsagortsyan · 2006 · PaperPublished and peer-reviewed
- STM-D-1081Advanced Electromagnetism: Foundations, Theory and ApplicationsTerence W. Barrett, Dale M. Grimes · 1995 · BookPublished and peer-reviewed
16 Plasmoids, charge clusters and the orbs
- STM-D-0004Energy conversion using high charge densityKenneth R. Shoulders, Jupiter Toy Co · 1989 · PatentWhat to watch
- STM-D-0009Kenneth R. Shoulders patent familyKenneth R. Shoulders · 1991 · PatentWhat to watch
- STM-D-0023Force-Free Time-Harmonic PlasmoidsJack Nachamkin, Phillips Laboratory · 1992 · ReportPublished and peer-reviewed
- STM-D-0024Observation of the optical/spectral characteristics of ball lightningCen, Yuan, Xue · 2014 · PaperPublished and peer-reviewed
- STM-D-0053A Possible Heuristic Explanation of Exotic Vacuum ObjectsGraham K. Hubler · 2022 · PaperWhat to watch
- STM-D-0078Magnetohydrodynamic propulsion apparatusJames F. King, Jr. · 1964 · PatentDesigned, not yet built
- STM-D-0185Method of and apparatus for production and manipulation of high density chargeKenneth R. Shoulders · 1991 · PatentDesigned, not yet built
- STM-D-0193The Shoulders EVO patent family (high charge density energy conversion)Kenneth R. Shoulders, Jupiter Toy Co · 1992 · PatentWhat to watch
- STM-D-0320MH370 leaked “orb” and “jet” videos (worked example)attrib. RegicideAnon · 2014 · VideoWhat to watch
- STM-D-0330DIRD MHD Air Breathing Propulsion and Power for Aerospace ApplicationsDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0350DIRD Laser Lightcraft NanosatellitesDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0384Dynamics and Density Measurements in a Small Plasma Focus of Tens-of-Joules-Emitting NeutronsAriel Tarifeño-Saldivia, Cristian Pavez, José Moreno · 2011 · PaperPublished and peer-reviewed
- STM-D-0391Experimental Demonstration in the Laboratory of the Existence of Magneto-Hydrodynamic Waves in Ionized HeliumWinston H. Bostick, Morton A. Levine · 1952 · PaperSettled physics
- STM-D-0396Ball lightning as a free-force magnetic knot with linked streamersA. F. Rañada, M. Soler, J. L. Trueba · 1999 · PaperPublished and peer-reviewed
- STM-D-0432A brief history of ball lightning observations by scientists and trained professionalsAlexander G. Keul · 2021 · PaperWhat to watch
- STM-D-0436Expected spectrum of high-energy photons from ball lightningMikhail L. Shmatov · 2005 · PaperPublished and peer-reviewed
- STM-D-0454A theory of ball lightning as an electric dischargeJ J Lowke · 1996 · PaperPublished and peer-reviewed
- STM-D-0466Ball Lightning InvestigationsV. L. Bychkov, A. I. Nikitin, G. C. Dijkhuis · 2010 · PaperPublished and peer-reviewed
- STM-D-0469Experimental Study of Ionized Matter Projected across a Magnetic FieldWinston H. Bostick · 1956 · PaperSettled physics
- STM-D-0473Electrodynamic model of ball lightningAnatoly I. Nikitin · 2024 · PaperPublished and peer-reviewed
- STM-D-0479A Fourier-Bessel transform method for efficiently calculating the magnetic field of solenoidsJack Nachamkin, C. J. Maggiore · 1980 · PaperSettled physics
- STM-D-0484Axially and spherically symmetric solitons in warm plasmaMaxim Dvornikov · 2011 · PaperPublished and peer-reviewed
- STM-D-0485Ball Lightning: A New Step in UnderstandingVladimir L. Bychkov, Anatoly I. Nikitin · 2014 · PaperPublished and peer-reviewed
- STM-D-0487Assessment of ball lightning cases by correlated LLS dataAlexander G. Keul, Gerhard Diendorfer · 2018 · PaperPublished and peer-reviewed
- STM-D-0507Effect of discrete wires on the implosion dynamics of wire array Z pinchesS. V. Lebedev, F. N. Beg, S. N. Bland · 2001 · PaperPublished and peer-reviewed
- STM-D-0513Electrostatic charge bounds for ball lightning modelsKarl D Stephan · 2008 · PaperPublished and peer-reviewed
- STM-D-0516Equilibrium flow structures and scaling of implosion trajectories in wire array Z pinchesJ. P. Chittenden, S. V. Lebedev, B. V. Oliver · 2004 · PaperPublished and peer-reviewed
- STM-D-0534Energy density calculations for ball-lightning-like luminous silicon ballsGerson S Paiva, Joacy V Ferreira, Cristiano C Bastos · 2010 · PaperPublished and peer-reviewed
- STM-D-0552Focus Fusion: Overview of Progress Towards p-B11 Fusion with the Dense Plasma FocusEric J. Lerner, Syed M. Hassan, Ivana Karamitsos-Zivkovic · 2023 · PaperPublished and peer-reviewed
- STM-D-0572The Plasma Focus—Numerical Experiments, Insights and ApplicationsS. Lee, S. H. Saw · 2017 · PaperPublished and peer-reviewed
- STM-D-0578Magnetic Helicity, Spheromaks, Solar Corona Loops, and Astrophysical JetsPaul M. Bellan · 2017 · BookSettled physics
- STM-D-0580Quantum exchange interaction of spherically symmetric plasmoidsMaxim Dvornikov · 2012 · PaperPublished and peer-reviewed
- STM-D-0612Implosion dynamics of wire array Z-pinches: experiments at Imperial CollegeS. V. Lebedev, D. J. Ampleford, S. N. Bland · 2004 · PaperPublished and peer-reviewed
- STM-D-0624Micro ball lightning obtained during underwater spark discharges, compared with natural onesT.-A. Matsumoto · 2001 · PaperWhat to watch
- STM-D-0627Solar wind test of the de Broglie-Proca massive photon with Cluster multi-spacecraft dataAlessandro Retinò, Alessandro D.A.M. Spallicci, Andris Vaivads · 2016 · PaperPublished and peer-reviewed
- STM-D-0645The Ball Lightning Controversy: Empirical Case StudiesAlexander G. Keul · 2012 · PaperWhat to watch
- STM-D-0648Possible detection of high-energy photons from ball lightningM. L. Shmatov · 2019 · PaperWhat to watch
- STM-D-0650Modeling the Neuruppin ball lightning incidentKarl D. Stephan · 2023 · PaperPublished and peer-reviewed
- STM-D-0707Toward a theory of ball lightning occurring in houses and aircraftJohn J. Lowke, Wilfried Heil, Eugene Tam · 2021 · PaperPublished and peer-reviewed
- STM-D-0711Toward a theory of ball lightningJ. J. Lowke, M. A. Uman, R. W. Liebermann · 1969 · PaperPublished and peer-reviewed
- STM-D-0730Preparations for pB11 tests in the FF-2B dense plasma focusEric J. Lerner, Syed M. Hassan · 2024 · PaperOn the bench now
- STM-D-0733The spheromak confinement deviceT. R. Jarboe · 2005 · PaperPublished and peer-reviewed
- STM-D-0746Plasma and Beams Dynamics in PF-1000 Device under the Full-Scale Energy StorageV. A. Gribkov, A. Banaszak, B. Bienkowska · 2006 · PaperPublished and peer-reviewed
- STM-D-0763New model and estimation of the danger of ball lightningM. L. SHMATOV · 2003 · PaperPublished and peer-reviewed
- STM-D-0798Formation of bound states of electrons in spherically symmetric oscillations of plasmaMaxim Dvornikov · 2010 · PaperPublished and peer-reviewed
- STM-D-0824Production of Ball-Lightning-Like Luminous Balls by Electrical Discharges in SiliconGerson Silva Paiva, Antonio Carlos Pavão, Elder Alpes de Vasconcelos · 2007 · PaperPublished and peer-reviewed
- STM-D-0828Transport and collapse of micro ball lightningTakaaki Matsumoto · 2000 · PaperWhat to watch
- STM-D-0840Observations of Explosions of High-Speed Plasma in a Magnetic Field.Winston H. Bostick · 1958 · PaperPublished and peer-reviewed
- STM-D-0841Generation of laboratory nanoflares from multiple braided plasma loopsYang Zhang, Seth Pree, Paul M. Bellan · 2023 · PaperPublished and peer-reviewed
- STM-D-0860Verification of validity of the electrodynamic model of ball lightningAnatoly I. Nikitin · 2024 · PaperPublished and peer-reviewed
- STM-D-0894First comparisons of ball-lightning report website data with lightning-location-network dataKarl D. Stephan, Richard Sonnenfeld, Alexander G. Keul · 2022 · PaperPublished and peer-reviewed
- STM-D-0904Magnetically Driven Flows in Arched Plasma StructuresE. V. Stenson, P. M. Bellan · 2012 · PaperPublished and peer-reviewed
- STM-D-0912Long-Lived Luminous Formations (LLO), Ball Lightning (BL), and Their ResearchesVladimir L. Bychkov · 2022 · PaperPublished and peer-reviewed
- STM-D-0915Z-pinch discharges in aluminum and tungsten wiresJ. Ruiz-Camacho, F. N. Beg, A. E. Dangor · 1999 · PaperPublished and peer-reviewed
- STM-D-0917Influence of a Prepulse Current on a Fiber Z-PinchA. Lorenz, F. N. Beg, J. Ruiz-Camacho · 1998 · PaperPublished and peer-reviewed
- STM-D-0920Coherent control of plasma dynamics by feedback-optimized wavefront manipulationZ.-H. He, B. Hou, G. Gao · 2015 · PaperPublished and peer-reviewed
- STM-D-0924Kinetic characteristics of ions in an inertial electrostatic confinement deviceD. Bhattacharjee, N. Buzarbaruah, S. R. Mohanty · 2020 · PaperPublished and peer-reviewed
- STM-D-0926Fast heat pulse propagation in hot plasmasEnzo Lazzaro, Hans Wilhelmsson · 1998 · PaperPublished and peer-reviewed
- STM-D-0930Modelling of macroscopic magnetic islands in tokamaksF. Porcelli, A. Airoldi, C. Angioni · 2001 · PaperPublished and peer-reviewed
- STM-D-0937Study on discharge plasma in a cylindrical inertial electrostatic confinement fusion deviceN. Buzarbaruah, N.J. Dutta, D. Borgohain · 2017 · PaperPublished and peer-reviewed
- STM-D-0945Deuterium anions in inertial electrostatic confinement devicesD. R. Boris, E. Alderson, G. Becerra · 2009 · PaperPublished and peer-reviewed
- STM-D-0957Relaxation of Coaxial Nonneutral Magnetized PlasmasKimitaka Itoh, Sanae-I. Itoh, Shinichiro Toda · 2003 · PaperPublished and peer-reviewed
- STM-D-0959Temporal behavior of cold atmospheric plasma jetAlexey Shashurin, Mikhail N. Shneider, Arthur Dogariu · 2009 · PaperPublished and peer-reviewed
- STM-D-0966Formation of episodic magnetically driven radiatively cooled plasma jets in the laboratoryF. Suzuki-Vidal, S. V. Lebedev, A. Ciardi · 2009 · PaperPublished and peer-reviewed
- STM-D-0973Detection of an anomalous pressure on a magneto-inertial-fusion load current diagnosticMark Hess, Brian Hutsel, Christopher Jennings · 2017 · PaperPublished and peer-reviewed
- STM-D-1000Silicon nanostructures from electroless electrochemical etchingKurt W. Kolasinski · 2005 · PaperSettled physics
- STM-D-1006Plasma dynamics during the evolution of two wire Z-pinchF. N. Beg, J. Ruiz-Camacho, M. G. Haines · 2004 · PaperPublished and peer-reviewed
- STM-D-1013Acceleration and collimation of relativistic plasmas ejected by fast rotatorsSergey V. Bogovalov · 2001 · PaperPublished and peer-reviewed
- STM-D-1022A model of hard X-rays emission from free expanding Plasma-Focus dischargesEzequiel O. Fogliatto, José González, M. Barbaglia · 2014 · PaperPublished and peer-reviewed
- STM-D-1025Cross-point coronal plasma dynamics in two- and four-wire x-pinchesR. E. Madden, S. C. Bott, D. Haas · 2008 · PaperPublished and peer-reviewed
- STM-D-1027A theoretical study of ion plasma oscillationsW. W. Peterson, Harold E. Puthoff · 1959 · PaperPublished and peer-reviewed
- STM-D-1029Role of the shear flow profile on the stability of magnetic islandsAndrei I. Smolyakov, Enzo Lazzaro, R. Coelho · 2002 · PaperPublished and peer-reviewed
- STM-D-1037Energy extraction via magnetic reconnection in magnetized black holesShao-Jun Zhang · 2024 · PaperPublished and peer-reviewed
- STM-D-1056Flexible Cold Atmospheric Plasma Jet SourcesCarles Corbella, Sabine Portal, Michael Keidar · 2023 · PaperPublished and peer-reviewed
- STM-D-1061Inertial Confinement Fusion Propulsion for Deep Space Missions RevisitedGeorge H. Miley, Xiaoling Yang, Kirk Flippo · 2010 · PaperDesigned, not yet built
- STM-D-1065Transient electrical discharges in small devicesLeopoldo Soto, Andrey Esaulov, José Moreno · 2001 · PaperPublished and peer-reviewed
- STM-D-1068The National Ignition Facility: Ushering in a new age for high energy density scienceE. I. Moses, R. N. Boyd, B. A. Remington · 2009 · PaperOn the bench now
- STM-D-1069Rotating nonlinear magnetic islands in a tokamak plasmaAndrei I. Smolyakov, Akira Hirose, Enzo Lazzaro · 1995 · PaperPublished and peer-reviewed
- STM-D-1073Performance and scaling of a dense plasma focus light source for EUV lithographyIgor V. Fomenkov, Richard M. Ness, Ian R. Oliver · 2003 · PaperOn the bench now
- STM-D-1074A Light Ion Beam Driver for the Laboratory Microfusion FacilityJ. J. Ramirez, K. R. Prestwich, R. W. Stinnett · 1991 · PaperDesigned, not yet built
- STM-D-1076Absolute densities of energetic hydrogen ion species in an abnormal hollow cathode dischargeJ. Kipritidis, J. Khachan, M. Fitzgerald · 2008 · PaperPublished and peer-reviewed
- STM-D-1077Sheared flow stabilization experiments in the ZaP flow Z pinchU. Shumlak, B. A. Nelson, R. P. Golingo · 2003 · PaperOn the bench now
- STM-D-1080Radiation shielding calculations for the VISTA spacecraftSümer Şahin, Hacı Mehmet Şahin, Adem Acır · 2005 · PaperDesigned, not yet built
- STM-D-1083The Hall Instability of Weakly Ionized, Radially Stratified, Rotating DisksEdward Liverts, Michael Mond, Arthur D. Chernin · 2007 · PaperPublished and peer-reviewed
- STM-D-1085Filamentation in the pinched column of the dense plasma focusP. Kubeš, M. Paduch, J. Cikhardt · 2017 · PaperPublished and peer-reviewed
- STM-D-1086Optimization of a dense plasma focus device as a light source for EUV lithographyIgor V. Fomenkov, William N. Partlo, Richard M. Ness · 2002 · PaperOn the bench now
- STM-D-1090Physics of the Plasma UniverseAnthony L. Peratt · 1992 · BookPublished and peer-reviewed
- STM-D-1095Nonlinear Flow Generation By Electrostatic Turbulence In TokamaksW. X. Wang, P. H. Diamond, T. S. Hahm · 2010 · PaperPublished and peer-reviewed
- STM-D-1111Disruption control on FTU and ASDEX Upgrade with ECRHB. Esposito, G. Granucci, S. Nowak · 2009 · PaperPublished and peer-reviewed
- STM-D-1113Magnetic Reconnection in the Space Sciences: Past, Present, and FutureM. Hesse, P. A. Cassak · 2020 · PaperSettled physics
17 The unified picture
- STM-D-0005Breakthrough Propulsion Study: Assessing Interstellar Flight Challenges and ProspectsMarc G. Millis, Greason, Jeff, Stevenson, Rhonda · 2018 · ReportPublished and peer-reviewed
- STM-D-0022The Central Intelligence Agency and Overhead Reconnaissance: The U-2 and OXCART Programs, 1954–1974Pedlow, Welzenbach, CIA History Staff · 1992 · ReportSettled physics
- STM-D-0029Why Most Published Research Findings Are FalseJohn Ioannidis · 2005 · PaperPublished and peer-reviewed
- STM-D-0056NASA Breakthrough Propulsion Physics program overviewMarc G. Millis · 1998 · ReportPublished and peer-reviewed
- STM-D-0059Estimating flight characteristics of anomalous unidentified aerial vehiclesKevin H. Knuth, Robert M. Powell, Peter A. Reali · 2019 · PaperPublished and peer-reviewed
- STM-D-0060AARO Historical Record Report, Volume 1US Department of Defense, All-domain Anomaly Resolution Office · 2024 · ReportWhat to watch
- STM-D-0062Frontiers of Propulsion ScienceMarc G. Millis, Eric W. Davis · 2009 · BookPublished and peer-reviewed
- STM-D-0260NASA Breakthrough Propulsion Physics Workshop ProceedingsMillis, Marc G., Williamson, Gary Scott · 1999 · ReportOn the bench now
- STM-D-0320MH370 leaked “orb” and “jet” videos (worked example)attrib. RegicideAnon · 2014 · VideoWhat to watch
- STM-D-0328DIRD Anomalous Acute and Subacute Field Effects on Human Biological TissuesDIA / AAWSAP contractor · 2010 · ReportPublished and peer-reviewed
- STM-D-0371DIRD Space Access: Where We’ve Been and Where We Could GoDIA / AAWSAP contractor · 2010 · ReportDesigned, not yet built
- STM-D-0604Progress in revolutionary propulsion physicsMarc G. Millis · 2010 · PaperPublished and peer-reviewed
- STM-D-0626Overview of the Galileo ProjectAbraham (Avi) Loeb, Frank H. Laukien · 2023 · PaperOn the bench now
- STM-D-0758Improved instrumental techniques, including isotopic analysis, applicable to the characterization of unusual materials with potential relevance to aerospace forensicsGarry P. Nolan, Jacques F. Vallee, Sizun Jiang · 2022 · PaperPublished and peer-reviewed
- STM-D-0848The new science of Unidentified Aerospace-Undersea Phenomena (UAP)Kevin H. Knuth, Philippe Ailleris, Hussein Ali Agrama · 2025 · PaperPublished and peer-reviewed
- STM-D-0851Initial results from the first field expedition of UAPx to study unidentified anomalous phenomenaMatthew Szydagis, Kevin H. Knuth, Benjamin Kugielsky · 2025 · PaperPublished and peer-reviewed
- STM-D-0933Time Travel and Warp Drives: A Scientific Guide to Shortcuts through Time and SpaceAllen Everett, Thomas Roman · 2011 · BookPublished and peer-reviewed
- STM-D-0970Breaking spacetimePablo G Tello, Imogen Strong · 2025 · PaperWhat to watch
- STM-D-0980Centauri Dreams: Imagining and Planning Interstellar ExplorationPaul Gilster · 2004 · BookDesigned, not yet built
- STM-D-1014Vortex Formation in the Wake of Dark Matter PropulsionGlen A. Robertson, Mário J. Pinheiro · 2011 · PaperPublished and peer-reviewed
- STM-D-1026The Pioneer Effect: A New Physics with a New PrincipleRussell Bagdoo · 2022 · PaperWhat to watch
- STM-D-1050New frontiers in space propulsion sciencesGlen A. Robertson, Paul A. Murad, Eric W. Davis · 2008 · PaperWhat to watch
- STM-D-1058Axial Anomaly in Galaxies and the Dark UniverseJanning Meinert, Ralf Hofmann · 2021 · PaperPublished and peer-reviewed
- STM-D-1064Cosmology and the Door to Other Dimensions and UniversesRobert M. L. Baker, Jr., Paul Murad · 2003 · PaperWhat to watch
- STM-D-1071On the gravitational radiation of gravitating objectsArbab I. Arbab · 2009 · PaperPublished and peer-reviewed
- STM-D-1078Intelligence in the UniverseCarl Sagan · 1967 · BookWhat to watch
- STM-D-1081Advanced Electromagnetism: Foundations, Theory and ApplicationsTerence W. Barrett, Dale M. Grimes · 1995 · BookPublished and peer-reviewed
- STM-D-1084Charged Lepton Spectra from Hot-Spot EvaporationJulian Moosmann, Ralf Hofmann · 2012 · PaperPublished and peer-reviewed