"Gasoline: 46 MJ/kg. Fission: 79,000,000 MJ/kg. Antimatter: 90,000,000,000,000 MJ/kg.
There is no comparison. There is no 'next step.' This is the end of the line."
When matter meets antimatter, the conversion to energy is 100%. E = mc² with perfect efficiency. It is the most efficient reaction allowed by the laws of physics. A gram of antimatter equals the explosive yield of a nuclear bomb, but it fits in a thimble.
Antimatter Production Co does not view antimatter as a scientific curiosity. We view it as the battery of the future.
Stellar Furnace creates the energy. Antimatter Production stores it in the densest form possible. Our goal is 1 gram per year. To a physicist, this is a laughable fantasy—current global production is measured in nanograms. To Antimatter Production Co, it is a production quota. We are turning the rarest substance in the universe into a commodity.
01 — THE BILLION-TO-ONE RATIO
Why antimatter costs $62 trillion per gram: the universe is biased.
The Energy Cost (The Yield)
Standard accelerators fire a billion protons at a target to produce one antiproton—a yield of 0.0000001%. We use Recirculating Plasma Wakefield Acceleration via Maxwell Continuum laser arrays. We recycle the collision energy. Highfield Magnetics 300-Tesla lenses focus every impact. Efficiency jumps from one-in-a-billion to one-in-a-thousand.
The Temperature Problem (The Catch)
Newborn antiprotons travel at nearly light speed. You cannot catch a bullet with a butterfly net. We use Sympathetic Laser Cooling—mixing hot antiprotons with cold Magnesium ions. The ions steal heat via Coulomb interaction without touching the antimatter. Phase Flash cryogenics cool the trap to 0.1 Kelvin.
The Storage Problem (The Boom)
If antimatter touches the container wall, it annihilates. The wall is made of matter. We build a Diamagnetic Levitation Trap—a virtual wall of Highfield superconducting magnets. The antimatter floats inside a Vapor Vacuum anomaly chamber at 10−12 Torr. It never touches anything. It hangs in the void, glowing violet.
02 — THE HALO ACCELERATOR
A dedicated industrial collider. 10 km diameter. Subterranean ring encircling Civitas Prime.
Power source: a dedicated Tier-4 Stellar Furnace outputting 20 Gigawatts directly into the beam. We cannot produce 1 gram/year with a CERN-style ring buried underground. We need a factory.
The Production Chain
1.The Source. A bottle of Hydrogen gas. Strip the electrons. You have protons.
2.The Boost. Maxwell Continuum laser arrays kick the protons to 99.999% light speed in 100 meters (Wakefield Acceleration).
3.The Smash. The beam hits a spinning Iridium target. The energy tears the vacuum, creating pairs of protons and antiprotons.
4.The Sieve. Magnetic fields separate matter (left) from antimatter (right).
5.The Decelerator. Antimatter passes through a forest of foil sheets, slowing to capturable velocity.
6.The Trap. Anti-particles are guided into portable magnetic bottles.
03 — SELLING THE VOID-FIRE
Product tiers categorized by complexity and risk.
TIER 1: THE POSITRON
Particle: e+ | Rate: mg/day | Risk: Low | Target: Medical & Industrial
The AP-PET Source. Current hospital PET scans require a basement cyclotron because the isotopes die in minutes. We sell a positron trap the size of a suitcase. It holds enough positrons for 1,000 scans.
The Material Scanner. Fire positrons into a turbine blade. They wiggle into the atomic lattice and annihilate where there are defects. The ultimate non-destructive testing—finds cracks that X-rays miss.
TIER 2: THE ANTIPROTON
Particle: p̄ | Rate: μg/month | Risk: High | Target: Stellar Furnace & Oncology
The "ACE" Beam (Antiproton Cell Elimination). Fire a focused beam of antiprotons at a brain tumor. The Bragg Peak: particles pass through the skull harmlessly, stop exactly inside the tumor, and annihilate. The tumor is vaporized. The healthy brain is untouched. Surgery without a knife.
The Fusion Match. Sold exclusively to Stellar Furnace. A puff of antiprotons injected into the fusion fuel pellet triggers micro-explosion ignition. Catalyzed Fusion.
TIER 3: ANTIHYDROGEN
Particle: H̄ | Rate: ng/year | Risk: Extreme | Target: Lorentz Aerospace & Aetheric Sciences
The "Iso-Spin" Battery. Neutral antihydrogen stored as supercooled ice suspended in a laser lattice. This is the fuel for the Lorentz "Void" Class starships. A pellet the size of a sand grain can accelerate a ship to Mars in 3 days.
TIER 4: THE GRAM
Particle: Condensed H̄ Ice | Rate: 1g/year (Target) | Risk: Apocalyptic | Target: Strategic Reserve
The "Omegacontainer." This is not a product we sell. It is an asset we guard. A 10-ton tungsten sphere containing a vacuum chamber, redundant superconducting magnets, and a built-in liquid helium supply. Inside floats The Gram—a shimmering, suspended droplet of pure destruction.
1 Gram = 43 Kilotons of TNT = Hiroshima × 3. Purpose: Deep Space Propulsion (Interstellar) or Planetary Defense (Asteroid Interception).
04 — THE ANNIHILATION CORE
The "Lotus" Reactor. Variable-yield engine from 1 Watt to 1 Terawatt.
Designing a machine that can idle at 1 Watt and throttle to 1 Terawatt without melting requires atomic flow control. We don't dump fuel into the core—that's a bomb. We use a magnetic injection system that feeds the reaction atom by atom.
THE FEED: The "Zepto-Injector"
Maxwell Continuum optical tweezers sublimate a single anti-atom from the frozen cartridge surface. Highfield Magnetics catches it in a magnetic funnel. Microwatt mode: the laser pulses once per second. Click. Click. Click. Terawatt mode: the laser goes continuous wave. A stream of plasma screams down the needle.
THE REACTION: The "Null Point"
A matter stream meets the antimatter stream in the exact geometric center of the vacuum chamber. p + p̄ → π+ + π− + π0. The mass disappears. Energy explodes outward as gamma rays and charged particles.
THE HARVEST: The "Gamma-Sink"
Metallic Sciences hyper-tungsten honeycomb absorbs gamma rays, converting them to heat. Phase Flash liquid lithium loops drive turbines. Efficiency: 100% of mass becomes energy. We capture ~60% as heat and ~30% as directed thrust (charged pions).
Variable Geometry. The reactor walls are "Petals"—shielded plates that open and close.
- Closed Mode (Power Plant): Petals form a sphere. All energy trapped and converted to electricity.
- Open Mode (Thruster): Rear petals open. Charged pions ejected magnetically. The reactor becomes a rocket engine.
Output Tiers
THE "EMBER"
1W–10kW
Coffee mug. μg cartridge.
Refuel: once per 50 years.
THE "HEART"
100kW–100MW
Basketball. mg cartridge.
Powers Lorentz craft.
THE "SUN"
1GW–1TW
Two-story house. g cartridge.
Powers Civitas Prime.
THE KUGELBLITZ PROTOCOL [FORBIDDEN]
If fuel is injected faster than gamma rays can escape, the energy density exceeds the Schwarzschild radius. Result: a momentary microscopic black hole. The Kugelblitz radiates its entire mass in 10−35 seconds, creating a gravity wave pulse that can crack a tectonic plate. Status: Forbidden by International Treaty.
05 — THE EJECTION SEAT
Storing a nuclear bomb in a glass jar is dangerous. Storing 1 gram of antimatter is insane.
If the power fails, the magnets turn off, the antimatter touches the wall, and the city disappears. We have three layers of paranoia.
1
The Passive Backup ("The Forever Magnet"). Containment magnets use persistent-current superconducting loops. Even if the city grid goes dark, the current keeps flowing for 10,000 years. The field never dies as long as it stays cold.
2
The Liquid Shield ("The Heat Sink"). The trap is submerged in Phase Flash superfluid helium. If the magnets heat up, the helium absorbs the thermal load, buying 72 hours of grace time.
3
The "Launch" Protocol (Last Resort). Every storage unit is built on a Lorentz railgun shaft. If Aetheric Sciences detects an unstoppable containment breach: the roof opens, the railgun fires the canister at Mach 50, it exits the atmosphere in 10 seconds, containment fails in LEO. The explosion happens in space—a beautiful, harmless gamma-ray firework.
06 — THE ROADMAP
P1
The Positron Factory (Current)
Optimize wakefield lasers. Dominate the medical isotope market. Fund the expansion with hospital contracts.
P2
The Fusion Trigger (Year 3)
Produce enough antiprotons to switch Stellar Furnace to catalyzed fusion mode. Feedback loop: more fusion energy → more accelerator power → more antimatter.
P3
The Gram (Year 10)
Complete the Halo Accelerator ring. Achieve cooling-limited production. Begin stockpiling for the Lorentz Interstellar Mission.
SPECIFICATIONS
Accelerator
Halo Ring, 10 km ø
Power Input
20 GW (Stellar Furnace T4)
Beam Energy
99.999% c (Wakefield)
Cooling
0.1 K (Phase Flash)
Containment
Diamagnetic Levitation
Production Target
1 g / year
Reactor Type
Lotus (Variable Yield)
Failsafe
Railgun LEO Ejection
Facility
Civitas Prime (Subterranean)
COMMERCIAL APPLICATION // Z-1
THE Z-1 "VOID FLASK" — Portable Penning-Malmberg Trap
PRICE: $2.5M (Empty) / $50M (Filled) | CAPACITY: 1.0 μg | HOLD TIME: >500 Days | WEIGHT: 45 kg
FIG 1.0: EXTERNAL HOUSING
FIG 1.1: MAGNETIC GEOMETRY
The world's first suitcase-sized antimatter containment unit. Highfield ReBCO superconducting tape replaces room-sized copper coils. A closed-loop acoustic cryocooler replaces the liquid helium tanks. It holds 1012 antiprotons for 500 days on a single battery charge.
01. The Shell: Beryllium-Titanium weave. Transparent to X-rays for leak detection, stronger than steel. Getter pump maintains 10−17 Torr.
02. The Engine: 7-Tesla ReBCO solenoid creates the walls. Gold-plated ring electrodes create floor and ceiling fields.
03. The Failsafe: Onboard Strontium-90 RTG provides infinite backup power for 20 years. If all else fails: 43 kg TNT equivalent detonation (contained).
POWER GENERATION // LPD-1
THE "COLLIDER" DOCK — Direct Beam-Beam Annihilation Generator
FIG 2.0: LPD-1 SOLID STATE GENERATOR
Dual-Beam Injection
Emitter A (Fuel): Extracts antiprotons from the Z-1 Flask.
Emitter B (Target): Protonic hydrogen injector fires a matching proton stream.
Infinite Throttle Control
- Standby: 1,000 particles/sec (picowatts).
- Full Load: 1014 particles/sec (megawatts).
- Response: Nanoseconds. No spool-up lag.
PRODUCT BIBLIOGRAPHY
- Trapped Antihydrogen (Nature, 2010)
- Confinement of Antihydrogen for 1,000 Seconds (Nature Physics, 2011)
- Observation of the 1S-2S Transition in Trapped Antihydrogen (Nature, 2017)
- Characterization of the 1S-2S Transition in Antihydrogen (Nature, 2018)
- Laser Cooling of Antihydrogen Atoms (Nature, 2021)
- Observation of the Effect of Gravity on the Motion of Antimatter (Nature, 2023)
- A Parts-per-Billion Measurement of the Antiproton Magnetic Moment (Nature, 2017)
- Plasma and Trap-Based Techniques for Science with Antimatter (Physics of Plasmas, 2020)
- Beamed Core Antimatter Propulsion: Engine Design and Optimization (arXiv, 2012)
- Matter and Antimatter in the Universe (New Journal of Physics, 2012)
- Positron Production Using a 9 MeV Electron Linac for the GBAR Experiment (arXiv, 2021)
- Be+ Assisted Simultaneous Confinement of More Than 15,000 Antihydrogen Atoms (Nature Communications, 2025)
PRODUCTION FACILITIES & CONTAINMENT ARCHITECTURE
"The Sun provides the fire. The Vacuum provides the fuel. We provide the bucket."
FACILITY 01 — THE ICARUS STATION
Mercury High Orbit. The Schwinger Limit. Vacuum Breakdown.
Earth receives 1,360 W/m² of solar energy. Mercury receives 9,080 W/m²—a 7× multiplier before we switch on a single machine. We are not building solar panels. We are building solar-pumped lasers. We use the Sun as the flash lamp for the biggest laser system in human history.
The goal: we don't convert matter into antimatter (inefficient). We create matter and antimatter directly from light. E → m.
THE SCHWINGER LIMIT
The critical electric field strength: 1.3 × 1018 V/m.
The vacuum is not empty. It boils with virtual electron-positron pairs that pop into existence and instantly annihilate. If you apply an electric field stronger than the Schwinger Limit, you rip those pairs apart before they can recombine.
The result: you literally pull matter and antimatter out of thin air. The laser beam turns into a stream of particles.
THE CONVERSION
Input: Pure Light (Photons) → Output: Electron-Positron Plasma
No proton beams. No iridium targets. Just light and focus.
THE "SUN-EATER" RING
A sparse Dyson Swarm around Mercury.
01. THE MIRROR FIELD (The Collector)
Material: Metallic Sciences polished Beryllium-Gold foil.
Scale: 10,000 independent satellites orbiting Mercury.
Function: They don't generate power. They reflect and focus sunlight onto the Icarus Station.
02. THE MAXWELL PUMP (The Laser)
Type: Maxwell Continuum direct-solar-pumped Iodine lasers.
Mechanism: Sunlight hits the lasing medium directly—no electricity conversion losses.
Output: The station combines light from 10,000 mirrors into a single coherent X-ray laser pulse.
Power: Exawatts (1018 W) per pulse.
03. THE BREAKDOWN CHAMBER (The Anvil)
Components: Vapor Vacuum Event Chamber + Highfield Magnetics Funnel.
The Event: Two Exawatt laser pulses fire at each other. They collide in the center of the vacuum chamber. Intensity hits 1029 W/cm². "The Rip": the focal point explodes. A shockwave of pure electrons and positrons erupts from the void.
04. THE MAGNETIC SIEVE (The Harvest)
Component: Highfield Magnetics 500-Tesla Cyclotron.
The Sort: The magnetic field bends matter and antimatter in opposite directions.
Left (Matter): Dumped as waste heat or propellant.
Right (Antimatter): Decelerated and trapped.
THE "EMBER" CONVOY
Getting grams of positrons from Mercury to Earth without detonating the Solar System.
1.The Storage: "Induction Ice." Positrons are converted to Positronium (electron + positron orbiting each other), creating a meta-stable atom, then frozen into a dense condensate using Phase Flash tech. If the condensate melts, it detonates.
2.The Transport: "Void" Clippers. Lorentz Aerospace Tier 4 "Charon" class. A long needle-like spine with the antimatter container at the very front, far from the engines. Solar sail outbound + ion drive. If magnetic failure is detected, the cargo is jettisoned instantly—it explodes 10,000 km away in deep space.
3.The Reception: AP-Lunar. The Charon does not land on Earth. Antimatter is offloaded at the Lunar Orbital Station, broken into consumer units (micrograms), and shuttled to Earthside hospitals and power plants.
SCALING COMPARISON
| FEATURE | MERCURY SWARM | EARTH / ORBIT |
| Yield | 10 g/year | 500 mg/year |
| Civilization Tier | Interstellar (Type 1.5) | Interplanetary (Type 1.0) |
| Lorentz Drives | Relativistic capable | Interplanetary only |
| The "Gram" Product | Fuel rods for industry | Sovereign Deterrent |
| Energy Economics | Post-Scarcity | Managed Scarcity |
FACILITY 02 — PROJECT TARTARUS
The Terrestrial Antimatter Fortress. Classification: BLACK / EXISTENTIAL.
Location: The Laurentian Craton (Canadian Shield)—tectonically stable for 2.5 billion years.
Mandate: Zero-leak containment of antihydrogen. 100% kinetic dissipation of total inventory failure (43 kT).
Philosophy: Passive safety. The facility's resting state—even with zero power and total computer failure—forces the antimatter into a state of minimal damage.
The facility is not a building. It is a geomechanical machine buried 2 kilometers inside the Earth's crust. A vertical cylinder 2,000 m deep and 200 m wide.
- The Cap (0–500 m): Solid reinforced concrete and lead. Seals the facility from the atmosphere.
- The Shaft (500–1,500 m): The "Blast Chimney" (directed energy release).
- The Core (1,500–2,000 m): Production loops and storage banks.
CONTAINMENT LAYERS
LAYER 0: THE QUANTUM TRAP
Highfield Magnetics Ioffe-Pritchard geometry at 120 Tesla. Persistent-current superconductors—once charged, the current flows forever without resistance. If all external power is cut, the cage remains active for centuries.
Vapor Vacuum getter-skin liner (Zr-V-Fe alloy) maintains 10−14 Torr—lower than deep space. Mean free path measured in light-years.
LAYER 1: THE FIRST WALL
Material: Isotopically enriched Tungsten-184 (Metallic Sciences). Highest melting point of any metal (3,422°C). Low neutron capture cross-section—remains structurally sound under antimatter bombardment.
Ablative Strategy: The inner 5 cm is designed to vaporize. The phase change absorbs massive energy, preventing the shockwave from coupling to the outer structure.
LAYER 2: THE ENERGY SINK
A 10-meter thick sphere of super-cooled, pressurized water mixed with Boron-10 beads (Phase Flash). Water absorbs thermal energy; Boron-10 captures the neutron flood; steam expansion converts the high-frequency crack of the explosion into a slower, lower-pressure shove.
LAYER 3: THE SEISMIC ROOT
The 50,000-ton core assembly floats inside the shaft on Highfield Magnetics maglev suspension. Seismically decoupled from the Earth. If the core explodes, the shockwave must jump an air gap before reaching the geology.
The Drop-Keel: Six hydraulic deadman struts at the base. If levitation fails, they compress slowly (viscous damping), bringing the core to a soft landing. Inner trap and outer levitation are thermally decoupled by the Flash-Ice ocean between them.
THE CHIMNEY
Directed energy release. We do not contain the pressure. We direct it.
The vertical shaft is rifled like a gun barrel. It channels plasma and blast pressure upward, not outward. The concrete cap is designed to blow off cleanly. Result: a massive vertical column of fire shoots 20 km into the stratosphere. The facility is destroyed, the cap is lost, but the shockwave is vented into the atmosphere. Surrounding infrastructure survives.
Zone 1: Vaporization Core
0–1.0 km — Total asset loss
Zone 2: Kinetic Kill Zone
1.0–3.0 km — 5-20 psi overpressure
Zone 3: Exclusion Boundary
3.0–10 km — Robot-only moat
Zone 4: Human Safety Line
10+ km — Safe for habitation
Total secured area: 314 km² (10 km radius circle). Location: remote craton or dedicated artificial island.
THE ROBOTIC ECOLOGY
No human ever enters Level 0. Foundation Kinetics machines maintain the core.
"RAD-ROACHES"
Small hexapedal robots, radiation-hardened lead and gold alloys. Crawl over magnetic coils inspecting for micro-fractures via ultrasound. Disposable—circuits degrade from background radiation. Every 30 days they march into an incinerator/recycler and are replaced by fresh units printed on-site.
"ATLASES"
Massive hydraulic frames for fuel rods and coolant tanks. Operate in pairs—if one fails, the other lifts both payload and broken robot. Hard-wired optical fiber only; wireless forbidden near the traps.
"LAZARUS"
Last resort: Cellular Foundry biological automata in lead suits. Mindless, genetically engineered organisms whose biological neurons survive EMP and radiation types that scramble diamond processors. The final manual valve turners.
POWER & GRID INDEPENDENCE
Tartarus is not connected to the North American power grid. It runs on a dedicated Stellar Furnace reactor (5 GW) with a 50-year on-site Boron-11 fuel supply. If the fusion reactor fails, a massive molten salt thermal battery drives steam turbines for 30 days—enough time to safely spin down the magnetic traps.
BLACK SWAN MITIGATIONS
ORBITAL KINETIC STRIKE
The facility is 2 km deep. Even a nuclear bunker buster penetrates only ~300 m. Vibration sensors trigger immediate lockdown, placing traps into maximum dampening suspension mode.
AETHERIC / CYBER ATTACK
Core controllers are analog-optical. Light logic gates physically disconnected from the global network. Data flows out (monitoring) but no data line flows in. Updates are physical: a technician walks an optical crystal module to the control room.
"GREY GOO" SCENARIO
EMP charges embedded in every corridor. A single command fries the neural pathways of every robot in the shaft, freezing them instantly.
FACILITY SPECIFICATIONS
Icarus Station
Mercury High Orbit, 0.39 AU
Solar Flux
9,080 W/m² (7× Earth)
Mirror Swarm
10,000 satellites
Laser Pulse
Exawatt (1018 W)
Schwinger Threshold
1029 W/cm²
Magnetic Sieve
500 T Cyclotron
Tartarus Location
Laurentian Craton, 2 km deep
Shaft Dimensions
200 m ø × 2,000 m
Containment Field
120 T (Ioffe-Pritchard)
Core Mass
50,000 tonnes (maglev)
Dedicated Power
5 GW Stellar Furnace
FACILITY IMAGERY
FIG 1.0: ICARUS STATION — MERCURY ORBITAL ANTIMATTER FACTORY
FIG 2.0: PROJECT TARTARUS — 2KM UNDERGROUND FACILITY CROSS-SECTION
FIG 3.0: EMBER CONVOY — ANTIMATTER TRANSPORT IN MAGNETIC CONTAINMENT
Research Repository
Antimatter News
2025-11-18 - Breakthrough in antimatter production - (
cern)
2025-07-23 - A quantum leap for antimatter measurements - (
cern)
2025-07-16 - A new piece in the matter-antimatter puzzle - (
cern)
2025-04-02 - AEgIS transforms smartphone sensors into an antimatter camera of unprecedented resolution - (
cern)
2024-12-09 - ALICE finds first ever evidence of the antimatter partner of hyperhelium-4 - (
cern)
2024-10-25 - BASE experiment takes a big step towards portable antimatter - (
cern)
2024-02-22 - AEgIS experiment paves the way for new set of antimatter studies by laser-cooling positronium - (
cern)
2023-09-27 - ALPHA experiment at CERN observes the influence of gravity on antimatter - (
cern)
2022-12-12 - ALICE estimates how transparent the Milky Way is to antimatter - (
cern)
2022-04-07 - LHCb reveals secret of antimatter creation in cosmic collisions - (
cern)
2021-08-25 - Two-trap cooling promises antimatter precision - (
cern)
2021-03-31 - ALPHA cools antimatter using laser light for the first time - (
cern)
2020-11-03 - A transportable antiproton trap to unlock the secrets of antimatter - (
cern)
2020-09-18 - A mobile antiproton reservoir for precision measurements - (
cern)
2018-03-11 - The PUMA project: Antimatter goes nomad - (
cern)
2018-03-07 - Making antimatter transportable - (
cern)
2017-08-04 - First antiprotons in ELENA - (
cern)
2016-12-20 - The BASE antiprotons celebrate their first birthday - (
cern)
2011-06-05 - CERN experiment traps antimatter atoms for 1000 seconds - (
cern)
2010-11-17 - Antimatter atoms successfully stored for the first time (
lbl)
2008-11-17 - Billions of particles of anti-matter created in laboratory (
llnl)
2006-04-14 - New and improved antimatter spaceship for Mars missions - (
nasa)
2004-10-04 - Air Force pursuing antimatter weapons (
sfgate)
2000-08-10 - Start-up of CERN's new antimatter factory (
cern)
1996-01-04 - First atoms of antimatter produced at CERN (
cern)
1985-08-27 - Huge production of antimatter planned (
nyt)
1985-06-01 - Concepts, problems, and opportunities for use of annihilation energy: An annotated briefing on near-term RDT&A to assess feasibility -
https://www.rand.org/content/dam/rand/pubs/notes/2007/N2302.pdf
Antimatter Production
2021-03-02 - Enhancing positron production using front surface target structures -
https://aip.scitation.org/doi/full/10.1063/5.0038222
2020-09-24 - Roadmap to increase antimatter production by 10 billion times -
https://www.nextbigfuture.com/2020/09/roadmap-to-increase-antimatter-production-by-10-billion-times.html
2013-01-21 - A brief review of antimatter production -
https://arxiv.org/abs/1301.4902
2012-08-22 - Antimatter production for near-term propulsion applications -
https://arc.aiaa.org/doi/abs/10.2514/6.1999-2691
2012-08-17 - The prospects for space-based antimatter production -
https://arc.aiaa.org/doi/abs/10.2514/6.1991-1987
2011-05-18 - Antimatter production in proton-proton and heavy-ion collisions at ultrarelativistic energies -
https://arxiv.org/abs/1105.3719
2001-07-08 - Antimatter production at a potential boundary -
https://ntrs.nasa.gov/api/citations/20010091016/downloads/20010091016.pdf
CERN
(
cern) CERN
CERN Accelerators
(
cern) Accelerators
(
cern) Antiproton Decelerator
(
cern) Large Hadron Collider
CERN Experiments
(
cern) Antihydrogen Laser Physics Apparatus (ALPHA)
(
cern) Gravitational Behaviour of Antimatter at Rest (GBAR)
(
cern) Isotope mass Separator On-Line facility (ISOLDE)
CERN ALPHA
CERN ALPHA -
https://alpha.web.cern.ch/
How ALPHA works -
https://alpha.web.cern.ch/how-alpha-works
Why antihydrogen research? -
https://alpha.web.cern.ch/motivation
Science -
https://alpha.web.cern.ch/science
Laser cooling of antihydrogen atoms -
https://www.nature.com/articles/s41586-021-03289-6
CERN Engineering
(
cern) Superconductivity
(
cern) Superconducting electromagnets
Large Hadron Collider
(
wiki) Large Hadron Collider
Future Circular Collider
(
wiki) Future Circular Collider
(
youtube) Designing the Future Circular Collider
CERN - Future Circular Collider -
home.cern/science/accelerators/future-circular-collider
Future Circular Collider Study -
fcc.web.cern.ch
Collider News
2020-06-19 - CERN makes bold push to build €21-billion supercollider -
https://www.nature.com/articles/d41586-020-01866-9
2019-02-05 - CERN considers a 100 TeV circular hadron collider -
https://physicstoday.scitation.org/do/10.1063/PT.6.2.20190205a/full/
2019-12-13 - A new schedule for the LHC and its successor
home.cern
2018-06-01 - China's bid for a circular electron-positron collider -
cerncourier.com
Fermilab Antimatter
Fermilab -
https://www.fnal.gov/
Fermilab - (
wiki)
Fermilab's antimatter production rate -
fnal.gov/pub/science/inquiring/questions/antimatterprod.html
2016-09-20 - Matter and antimatter -
https://news.fnal.gov/2016/09/matter-and-antimatter/
New Concepts and Fermilab Facilities for Antimatter Research -
https://ui.adsabs.harvard.edu/abs/2008APS..APRS12007J/abstract
Fermilab Offers Tours of Antimatter Production Site -
https://phys.org/news/2006-04-fermilab-antimatter-production-site-april.html
Fermilab probes matter-antimatter transitions -
https://physicsworld.com/a/fermilab-probes-matter-antimatter-transitions/
A report on the first Fermilab workshop on antimatter physics at low energy -
https://aip.scitation.org/doi/abs/10.1063/1.36123?journalCode=apc
Fermilab Physicists Find New Matter-Antimatter Asymmetry -
http://www-news.uchicago.edu/releases/99/990301.ktev.shtml
Antimatter Links
What is antimatter -
livescience.com/32387-what-is-antimatter.html
The Story of Antimatter -
timeline.web.cern.ch/timeline-header/86
Antimatter production in practice -
https://angelsanddemons.web.cern.ch/antimatter/making-antimatter.html
Antimatter: The Production Problem -
https://www.centauri-dreams.org/2012/05/21/antimatter-the-production-problem/
Breakthroughs for Antimatter Production and Storage -
https://www.nextbigfuture.com/2020/06/steven-howe-breakthroughs-for-antimatter-production-and-storage.html
Physicists find ways to increase antihydrogen production -
https://phys.org/news/2015-05-physicists-ways-antihydrogen-production.html
Large-scale antimatter production -
https://physics.stackexchange.com/questions/268126/large-scale-antimatter-production
Dense antihydrogen: its production and storage to envision antimatter propulsion -
https://iopscience.iop.org/article/10.1088/1464-4266/5/6/001/pdf
Developments for pulsed antihydrogen production towards direct gravitational measurement on antimatter -
https://iopscience.iop.org/article/10.1088/1402-4896/abbaa1
Mass Production of Antimatter for High-Energy Propulsion -
https://arc.aiaa.org/doi/abs/10.2514/2.5540
Innovative Antimatter Production Technologies -
https://www.sbir.gov/sbirsearch/detail/182783
Pulsed production of antihydrogen -
https://www.nature.com/articles/s42005-020-00494-z
Particle Accelerators Used in the Production of Antimatter -
https://www.ivoryresearch.com/samples/particle-accelerators-used-in-the-production-of-antimatter/
Non-neutral plasma physics: antimatter production, it's uses and charged particle storage & manipulation -
https://www.findaphd.com/phds/project/non-neutral-plasma-physics-antimatter-production-it-s-uses-and-charged-particle-storage-and-manipulation/?p76316
Antimatter production source? -
https://forum.nasaspaceflight.com/index.php?topic=34796.0
How To Make and Trap Antimatter -
https://www.popularmechanics.com/science/a25908/how-to-make-and-trap-antimatter/
Antimatter mass production -
https://www.physicsforums.com/threads/antimatter-mass-production.837537/
Antimatter production in central Au+Au collisions -
https://journals.aps.org/prc/abstract/10.1103/PhysRevC.86.054910
Antimatter production -
https://forum.kerbalspaceprogram.com/index.php?/topic/76225-antimatter-production/
PENTATRAP Project -
mpi-hd.mpg.de
Magnetic trap for antimatter -
bnl.gov/magnets/alpha/
Energy Density -
whatisnuclear.com/energy-density.html
Energy Density (GWh/kg)
Antimatter (25,000)
Hydrogen fusion (178)
Uranium (22)
1 Megajoule = 278 Watt hours
1 kilogram antimatter = 2.85 GW for 1 year
Antimatter Production on Yahoo
Antimatter Production on Bing
Antimatter Videos
(
youtube) Antimatter Explained
(
youtube) Why This Stuff Costs $2700 Trillion Per Gram - Antimatter at CERN
Antimatter Wiki
(
wiki) Accelerator physics
(
wiki) Antihydrogen
(
wiki) Antimatter
(
wiki) Antimatter rocket
(
wiki) Antimatter weapon
(
wiki) Antiparticle
(
wiki) Antiproton
(
wiki) Brookhaven National Laboratory
(
wiki) Electrically powered spacecraft propulsion
(
wiki) Electrostatic levitation
(
wiki) Fermilab
(
wiki) Joule
(
wiki) Magnetic lattice (accelerator)
(
wiki) Particle accelerator
(
wiki) Particle physics
(
wiki) Positron
(
wiki) Quadrupole ion trap
(
wiki) Quadrupole magnet
(
wiki) Relativistic Heavy Ion Collider
(
wiki) Synchrotron
(
wiki) Tevatron
Companies
Superconductor news
2020-07-17 - MagLab awarded $1.5M by U.S. Department of Energy to develop better superconductors -
news.fsu.edu
Superconducting materials
(
wiki) Niobium-germanium
(
wiki) Niobium-tin
(
wiki) Helium
(
wiki) Helium cryogenics
Electromagnetism
(
wiki) Electromagnetism
(
wiki) Solenoid
MagLab
National High Magnetic Field Laboratory -
nationalmaglab.org
Antimatter People
Paul Dirac (
wiki)
Carl David Anderson (
wiki)
Walter Oelert (
wiki)
Elise Wursten
Alexandre Obertelli
Christian Smorra
Antimatter Research
1928-01-02 - The quantum theory of the electron - Paul Dirac -
royalsocietypublishing.org/doi/10.1098/rspa.1928.0023
1933-03-15 - The Positive Electron - Carl D. Anderson -
journals.aps.org/pr/pdf/10.1103/PhysRev.43.491
1934-03-03 - The Positron - Carl D. Anderson -
nature.com/articles/133313a0
Recent History of Breakthrough Propulsion Studies
Millis, M. G., and Nicholas, T., "Responding to Mechanical Antigravity," NASA TM-2006-214390; AIAA Paper 2006-4913.
Kuhn, T. S.,
The Structure of Scientific Revolutions, Univ. Chicago Press, Chicago, 1962.
Foster, R. N., Innovation: The Attacker's Advantage, Summit Books, New York, 1986.
Horgan, J., The End of Science: Facing the Limits of Knowledge in the Twilight of the Scientific Age, Addison Wesley, Reading, MA, 1996.
Dyson, F., Imagined Worlds, Harvard Univ. Press, Cambridge, MA, 1997.
Sanger, E., "The Theory of Photon Rockets," Space Flight Problems, Laubscher, Biel-Bienne, Switzerland, 1953, pp. 32-40.
Sanger, E., "On the Attainability of the Fixed Stars," Proceedings of the 7th International Astronautical Congress, Rand Corp., Santa Monica, CA, 17-22 Sept. 1956, pp. 89-133.
Ackeret, J., "On the Theory of Rockets," Journal of the British Interplanetary Society, Vol. 6, 1947, pp. 116-123.
von Hoerner, S., "
The General Limits of Space Travel," Interstellar Commmunication, A. G. W. Cameron (ed.), New York, Benjamin, 1963, pp. 144-159.
Shepherd, L.R. "Interstellar Flight," Journal of the British Interplanetary Society, Vol. 11, 1952, pp. 149-167.
Papailiou, D. D. (ed.), "Frontiers in Propulsion Research: Laser, Matter-Antimatter, Excited Helium, Energy Exchange, Thermonuclear Fusion," TM-33-722 (NASA-CR-142707), Jet Propulsion Lab., Cal Tech, Passadena, CA, 1975.
Forward, R. L., "
Feasibility of Interstellar Travel: A Review," Acta Astronautica, Vol. 14, 1986, pp. 243-252.
Evans, R. A. (ed.), BAe University Round Table on Gravitational Research, Rept. FBS 007, British Aerospace Ltd., Preston, U.K., 26-27 March 1990.
Millis, M., and Williamson, G. S., "Experimental Results of Hooper's Gravity-Electromagnetic Coupling Concept," NASA TM-106963, Lewis Research Center, 1995.
Niedra, J., Myers, I., Fralick, C., and Baldwin, R., "Replication of the Apparent Excess Heat Effect in a Light Water-Potassium Carbonate-Nickel Electrolytic Cell," NASA TM-107167, Lewis Research Center, 1996.
Mead, F., Jr., "Exotic Concepts for Future Propulsion and Space Travel," Advanced Propulsion Concepts, 1989 JPM Specialist Session, (JANNAF), CPIA Publ. 528:93-99, 1989.
Landis, G.L. (ed.), Vision-21: Space Travel for the Next Millennium. Proceedings, NASA Lewis Research Center, 3-4 April 1990, NASA CP 10059, 1990.
Millis, M. G., "Exploring the Notion of Space Coupling Propulsion," Vision-21: Space Travel for the Next Millennium. Proceedings, NASA Lewis Research Center, NASA CP 10059, 3-4 Apr. 1990, pp. 313-322.
Morris, M. S., and Thorne, K. S., "
Wormholes in Spacetime and Their Use for Interstellar Travel: A Tool for Teaching General Relativity," American Journal of Physics, Vol. 56, 1988, pp. 395-412.
Morris, M. S., Thorne, K.S., and Yurtsever, U., "
Wormholes, Time Machines, and the Weak Energy Condition," Physical Review Letters, Vol. 61, 1988, pp. 1446-1449.
Visser, M., Lorentzian Wormholes: From Einstein to Hawking, AIP Press, New York, 1995.
Davis, E. W., "Advanced Propulsion Study," Air Force Research Lab., Final Report AFRL-PR-ED-TR-2004-0024, Edwards AFB, CA, April 2004, p. 65.
Alcubierre, M., "
The Warp Drive: Hyper-Fast Travel Within General Relativity," Classical and Quantum Gravity, Vol. 11, May 1994, pp. L73-L77.
Emme, E. D. (ed.), Science Fiction and Space Futures Past and Present, American Astronautical Society Historical Series, Vol. 5, American Astronautical Society, San Diego, CA, 1982.
Krasnikov, S. V., "
Hyperfast Interstellar Travel in General Relativity," Physical Review D, Vol. 56, 1997, pp. 2100-2108.
Misner, C. W., Thorne, K. W., and Wheeler, J. A.,
Gravitation, W.H. Freeman & Co., New York, 1973.
Millis, M., "
Challenge to Create the Space Drive," Journal of Propulsion and Power, Vol. 13, 1997, pp. 577-582.
Pfenning, M. J., and Ford, L. H. "
The Unphysical Nature of Warp Drive," Classical and Quantum Gravity, Vol. 14, 1997, pp. 1743-1751.
van Den Broeck, C., "
A 'Warp Drive' with More Reasonable Total Energy Requirements," Classical and Quantum Gravity, Vol. 16, 1999, pp. 3973-3979.
Sternberg, A. M., Kwiat, P. G., and Chiao, R. Y., "
Measurement of the Single-Photon Tunneling Time," Physical Review Letters, Vol. 71, 1993, pp. 708-711.
Podkletnov, E., and Nieminen, R., "
A Possibility of Gravitational Force Shielding by Bulk YBa2Cu3O7-x Superconductor," Physica C, Vol. 203, 1992, pp. 441-444.
Bennett, G. L., Forward, R. L., and Frisbee, R. H., "Report on the NASA/JPL Workshop on Advanced Quantum/Relativity Theory Propulsion," AIAA Paper 1995-2599, 31st ASME/SAE/ASEE Joint Propulsion Conference and Exhibit, San Diego, CA, 10-12 July 1995.
Cramer, J., Forward, R. L., Morris, M., Visser, M., Benford, G., and Landis G. L., "
Natural Wormholes as Gravitational Lenses," Phyiscal Review D, Vol. 51, 1995, pp. 3117-3120.
Sakharov, A., "
Vacuum Quantum Fluctuations in Curved Space and the Theory of Gravitation," Soviet Physics Doklady, Vol. 12, 1968, pp. 1040-1041.
Haisch, B., Rueda, A., and Puthoff, H.E., "
Inertia as a Zero-Point Field Lorentz Force," Physical Review A, Vol. 49, No. 2, 1994, pp. 678-694.
Rueda, A., and Haisch, B., "
Inertial Mass as Reaction of the Vacuum to Accelerated Motion," Physics Letters A, Vol. 240, 1998, pp. 115-126.
Rueda, A., and Haisch, B., "
Contribution to Inertial Mass by Reaction of the Vacuum to Accelerated Motion," Foundations of Physics, Vol. 28, 1998, pp. 1057-1108.
Puthoff, H. E., Little, S. R., and Ibison, M., "
Engineering the Zero-Point Field and Polarizable Vacuum for Interstellar Flight," Journal of the British Interplanetary Society, Vol. 55, 2002, pp. 137-144.
Mead, F. B., Jr., Advanced Propulsion Concepts - Project Outgrowth, AFRPL-TR-72-31, June 1972.
Cravens, D. L., "
Electric Propulsion Study," AL-TR-89-040, Final Report on Contract FO4611-88-C-0014, Air Force Astronautics Lab. (AFSC), August 1990.
Forward, R. L., 21st Century Space Propulsion Study, AL-TR-90-030, Final Report on Contract FO4611-87-C-0029, Air Force Astronautics Lab. (AFSC), Oct. 1990.
Forward, R. L., 21st Century Space Propulsion Study (Addendum), PL-TR-91-3022, Final (Addendum), OLAC Phillips Lab., formally known as Air Force Astronautics Lab. (AFSC), June 1991.
Cravens, D. L., "Electric Propulsion Study," AL-TR-89-040, Air Force Astronautics Laboratory (AFSC), Edwards AFB, CA, 1990.
Talley, R. L., "Twenty-First Century Propulsion Concept," PL-TR-91-3009, Phillips Laboratory, Air Force Systems Command, Edwards AFB, CA, 1991.
"Practical Robotic Interstellar Flight: Are We Ready?" 29 Aug.-1 Sept. 1994, New York Univ. and The United Nations, New York. Sponsored by the Planetary Society.
Anderson, J. L., "
Leaps of the Imagination: Interstellar Flight and the Horizon Mission Methodology," Journal of the British Interplanetary Society, Vol. 49, 1996, pp. 15-20.
Millis, M., Breathrough Propulsion Phyiscs Project: Project Management Methods, NASA TM-2004-213406, 2004.
Millis, M., NASA Breakthrough Propulsion Physics Program, NASA TM-1998-208400, 1998.
Krauss, L. M.,
The Physics of Star Trek, Basic Books, New York, 1995.
Puthoff, H. E., "
Gravity as a Zero-Point Fluctuation Force," Physical Review A, Vol. 39, 1989, pp. 2333-2342.
Chiao, R. Y., Steinberg, A. M., and Kwiat, P. G., "The Photonic Tunneling Time and the Superluminal Propagation of Wave Packets," Proceedings of the Adriatico Workshop on Quantum Interferometery, World Scientific, Singapore, 1994, p. 258.
Cramer, J. G., "
The Transactional Interpretation of Quantum Mechanics," Reviews of Modern Physics, American Physical Society, Vol. 58, 1986, pp. 647-688.
Forward, R. L., "
Extracting Electrical Energy from the Vacuum by Cohesion of Charged Foliated Conductors," Physical Review B, Vol. B30, 1984, pp. 1700-1702.
Cole, D., and Puthoff, H. E., "
Extracting Energy and Heat from the Vacuum," Physical Review E, Vol. 48, 1993, pp. 1562-1565.
Milonni, P. W., The Quantum Vaccum: An Introduction to Quantum Electrodynamics, Academic Press, San Diego, CA, 1994.
Yilmaz, H., "
Toward a Field Theory of Gravitation," Il Nuovo Cimento, Vol. 107B, 1992, pp. 941-960.
Tipler, Frank, "The Physics of Immortality," Doubleday, New York, 1994.
Millis, M. G., "Prospects for Breakthrough Propulsion from Physics," NASA TM-2004-213082, May 2004.
Schlicher, R. L., Biggs, A. W., and Tedeschi, W. J., "Mechanical Propulsion from Unsymmetrical Magnetic Induction Fields," AIAA Paper 95-2643, Joint Propulsion Conference, San Diego, CA, 1995.
Antimatter Books
(
amazon) Antimatter (The Ultimate Mirror) - Gordon Fraser
(
amazon) Discovery of Anti-Matter, The: The Autobiography of Carl David Anderson, the Second Youngest Man to Win the Nobel Prize - Carl David Anderson
(
amazon) Mirror Matter: Pioneering Antimatter Physics - Robert L. Forward, Joel Davis
(
amazon) Antimatter (Oxford Landmark Science) - Frank Close
Particle Physics
(
wiki) Baryon
(
wiki) Boson
(
wiki) Electron
(
wiki) Fermion
(
wiki) Hadron
(
wiki) Meson
(
wiki) Neutron
(
wiki) Pion
(
wiki) Proton
(
wiki) Quark
2021-03-10 - Detection of a particle shower at the Glashow resonance with IceCube -
https://www.nature.com/articles/s41586-021-03256-1
Magnet Companies
Superconducting Cables
Cryogenic Refrigerators
Limits of Interstellar Flight Technology
Williams, S., "Trends," Asimov's Science Fiction, Oct./Nov., 2007, pp. 4, 6.
Frisbee, R. H., "Beamed-Momentum LightSails for Interstellar Missions: Mission Applications and Technology Requirements," AIAA Paper 2004, 3567, 11-14 July 2004.
Frisbee, R. H., and Leifer, S. D., "Evaluation of Propulsion Options for Interstellar Missions," AIAA Paper 98-3403, 13-15 July 1998.
Anderson, J. L., "Leaps of the Imagination: Interstellar Flight and the Horizon Mission Methodology," Journal of the British Interplanetary Society, Vol. 49, 1996 pp. 15-20.
Wilcox, R. M., "Internet STELLAR DATABASE" -
http://www.stellar-database.com
Mewaldt, R., "Interstellar Mission Science Objectives," Presented at the NASA Office of Space Access and Technology (OSAT) Ninth Advanced Space Propulsion Workshop, Pasadena, CA, 11-13 March 1998; JPL Internal Document D-15671, R. H. Frisbee (ed.), 1998.
Martin, A. R. (ed.), "Project Daedalus - The Final Report of the BIS Starship Study," Journal of the British Interplanetary Society, suppl., 1978.
Jones, R. M., "Electromagnetically Launched Micro Spacecraft for Space Science Missions," AIAA Paper 88-0068, 11 Jan. 1988.
Schnitzler, B. G., Jones, J. L., and Chapline, G. F., "Fission Fragment Rocket Preliminary Feasibility Assessment," Idaho National Engineering Lab. Contract No. W-7405-ENG-88, 1989.
Forward, R. L., "
Radioisotope Sails for Deep Space Propulsion and Electrical Power," AIAA Paper 95-2596, 10-12 July 1995.
Bussard, R. W., "
Galactic Matter and Interstellar Flight," Astronautica Acta, Vol. 6, No. 4, 1960, pp. 179-194.
Forward, R. L., "
Starwisp: An Ultra-Light Interstellar Probe," Journal of Spacecraft and Rockets, Vol. 22, No. 3, 1985, pp. 345-350.
Forward, R. L., "
Roundtrip Interstellar Travel Using Laser-Pushed Lightsails," Journal of Spacecraft and Rockets, Vol. 21, No. 2, 1984, pp. 187-195.
Frisbee, R. H., "How to Build an Antimatter Rocket for Interstellar Missions - Systems Level Considerations in Designing Advanced Propulsion Technology Vehicles," AIAA Paper 2003-4696, 20-23 July 2003.
Fusion
(
wiki) Nuclear fusion
(
wiki) Magnetic confinement fusion
(
wiki) Tokamak
(
wiki) Inertial confinement fusion
(
wiki) National Ignition Facility
(
wiki) Aneutronic fusion
(
wiki) Helium-3
(
wiki) Deuterium
(
wiki) Lithium
(
wiki) Boron
ITER -
iter.org
National Ignition Facility -
https://lasers.llnl.gov/
Fusion Industry Association -
fusionindustryassociation.org/
(
wiki) Cold fusion
(
wiki) Muon
(
wiki) Muon-catalyzed fusion
Conditions for High-Yield Muon Catalyzed Fusion -
https://arpa-e.energy.gov/technologies/projects/conditions-high-yield-muon-catalyzed-fusion
But cold fusion does exist -
https://medium.com/predict/but-cold-fusion-does-exist-f49032a13138
Compact Muon Production and Collection Scheme for High-Energy Physics Experiments -
https://arxiv.org/abs/1504.00380
National Laboratories
Ames Laboratory -
ameslab.gov
Argonne National Laboratory -
anl.gov
Brookhaven National Laboratory -
bnl.gov
Fermi National Accelerator Laboratory -
fnal.gov
Idaho National Laboratory -
inl.gov
Lawrence Berkeley National Laboratory -
lbl.gov
Lawrence Livermore National Laboratory -
llnl.gov
Los Alamos National Laboratory -
lanl.gov
National Energy Technology Laboratory -
netl.doe.gov
National Renewable Energy Laboratory -
nrel.gov
Oak Ridge National Laboratory -
ornl.gov
Pacific Northwest National Laboratory -
pnnl.gov
Princeton Plasma Physics Laboratory -
pppl.gov
Sandia National Laboratories -
sandia.gov
Savannah River National Laboratory -
srnl.doe.gov
SLAC National Accelerator Laboratory -
slac.stanford.edu
Thomas Jefferson National Accelerator Facility -
jlab.org
2021-02-16 - How to Escape the Confines of Time and Space According to the CIA -
https://www.vice.com/en/article/7k9qag/how-to-escape-the-confines-of-time-and-space-according-to-the-cia
2020-12-07 - The Guy Predicting Stocks With An Army of App-Based Psychics -
https://www.vice.com/en/article/n7v7wb/the-guy-predicting-stocks-with-an-army-of-app-based-psychics
2017-07-22 - The US Army Funded Astral Projection and Hypnosis Research in the 80s -
https://www.vice.com/en/article/pad4a9/the-us-army-funded-astral-projection-and-hypnosis-research-in-the-80s
1983-06-09 - Analysis and Assessment of Gateway Process -
https://www.cia.gov/readingroom/docs/CIA-RDP96-00788R001700210016-5.pdf
Patents
2019-11-14 - Piezoelectricity-induced High Temperature Superconductor -
https://patents.google.com/patent/US20190348597A1
2019-09-26 - Plasma Compression Fusion Device -
https://patents.google.com/patent/US20190295733A1
2019-06-18 - High frequency gravitational wave generator -
https://patents.google.com/patent/US10322827B2
2018-11-20 - Electromagnetic field generator and method to generate an electromagnetic field -
https://patents.google.com/patent/US10135366B2
2017-11-02 - Craft Using an Inertial Mass Reduction Device -
https://patents.google.com/patent/US20170313446A1
2006-07-25 - Laser augmented turbojet propulsion system -
https://patents.google.com/patent/US7080504B2
1967-05-30 - Magnetohydrodynamic Propulsion Apparatus -
https://patents.google.com/patent/US3322374A
Advanced Space Propulsion Based on Vacuum (Spacetime Metric) Engineering -
https://arxiv.org/abs/1204.2184
Directed-energy weapons
(
wiki) Directed-energy weapon
(
wiki) Particle beam
Introducing the particle-beam weapon - (
web.archive.org)
2018-06-21 - U.S. Intel Says China To Have Railgun-Armed Ships By 2025 -
https://www.thedrive.com/the-war-zone/21689/u-s-intel-says-china-to-have-railgun-armed-ships-by-2025
2018-01-31 - Is This Chinese Navy Ship Equipped With An Experimental Electromagnetic Railgun? -
https://www.thedrive.com/the-war-zone/18119/is-this-chinese-navy-ship-equipped-with-an-experimental-electromagnetic-railgun
Lockheed Martin Directed Energy -
https://www.lockheedmartin.com/en-us/capabilities/directed-energy.html
Lockheed Martin Laser Weapon Systems -
https://www.lockheedmartin.com/en-us/capabilities/directed-energy.html
Raytheon Laser Solutions -
https://www.raytheonintelligenceandspace.com/capabilities/products/lasers
Paul Woskov - Into the Bedrock by Full Bore Millimeter-Waves - (
youtube)
Gyrotron - (
wiki)
Communications & Power Industries -
https://www.cpii.com/
Lasers
(
wiki) Laser
Jupiter Laser Facility -
https://jlf.llnl.gov/
IPG Photonics -
https://www.ipgphotonics.com/
TRUMPF Lasers -
https://www.trumpf.com/en_SE/products/laser/
Coherent -
https://www.coherent.com/
Teleportation Physics
Will, C. M. (1993), Theory and Experiment in Gravitational Physics (rev. ed.), Cambridge University Press, Cambridge, Section 2.6
Puthoff, H. E. (1999b), Personal Communication, Institute for Advanced Studies at Austin, Austin, TX
Mittelstaedt, P. and Nimtz, G. eds. (1998), "Workshop on Superluminal Velocities," Annalen der Physik, 7(7-8), 591-592
Kongzhi, S., Xianggao, L. and Liangzhong, Z. (1990), "Research into Paranormal Ability to Break Through Spatial Barriers," Chinese J. Somatic Sci., First Issue, 22 [translated into English by the Defense Intelligence Agency]
Naik, D. S., Peterson, C. G., White, A. G., Berglund, A. J. and Kwiat, P. G. (2000), "
Entangled state quantum cryptography: Eavesdropping on the Ekert protocol," Phys. Rev. Lett., 84, 4733
Perry, M. D. (2000), "The Amazing Power of the Petawatt," Science & Technology Rev. (LLNL- DoE publication), March issue, 4-12
Puthoff, H. E. (2003), Personal Communication, Institute for Advanced Studies at Austin, Austin, TX
Gisin, N., Scarani, V., Tittel, W. and Zbinden, H. (2000), "
Optical tests of quantum non-locality: from EPR-Bell tests towards experiments with moving observers," Ann. Phys. (Leipzig), 9, 831- 841
Overduin, J. M. and Wesson, P. S. (1998), "Kaluza-Klein Gravity,"
https://arxiv.org/abs/gr-qc/9805018
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Teleportation as a quantum computation," Physica D, 120, 43-47
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Scientists confronting the paranormal," Nature, 254, 470-472
Morris, M. S. and Thorne, K. S. (1988), "
Wormholes in spacetime and their use for interstellar travel: A tool for teaching general relativity", Am. J. Phys., 56, 395-412
Puthoff, H. E. (2002b), "
Polarizable-Vacuum Approach to General Relativity", in Gravitation and Cosmology: From the Hubble Radius to the Planck Scale, eds. R. L. Amoroso, G. Hunter, M. Kafatos, and J.-P. Vigier, Kluwer Academic Publ., Dordrecht, the Netherlands, pp. 431-446
Sørensen, J. L. (1998), Nonclassical light for atomic physics and quantum teleportation, Ph.D. thesis, Univ. of Aarhus
Raimond, J. M., Brune, M. and Haroche, S. (2001), "
Colloquium: Manipulating quantum entanglement with atoms and photons in a cavity," Rev. Mod. Phys., 73, 565-582
Targ, R. (1996), "Remote Viewing at Stanford Research Institute in the 1970s: A Memoir," J. Sci. Explor., 10, 77-88
Pan, J.-W., et al. (1998), "
Experimental entanglement swapping," Phys. Rev. Lett., 80, 3891-3894
Rucker, R. (1977), Geometry, Relativity and the Fourth Dimension, Dover Publ., New York
de Sabbata, V. and Schmutzer, E. eds. (1983), Unified Field Theories of More Than 4 Dimensions, Proc. Int'l School of Cosmology and Gravitation (Erice), World Scientific, Singapore
Puthoff, H. E., Little, S. R. and Ibison, M. (2002), "
Engineering the Zero-Point Field and Polarizable Vacuum for Interstellar Flight," J. British Interplanetary Soc., 55, 137-144
Houck, J. (1984a), "Surface Change During Warm-Forming," Archaeus, 2, no. 1
Zbinden, H., Brendel, J., Gisin, N. and Tittel, W. (2000a), "Experimental Test of Non-Local Quantum Correlation in Relativistic Configurations," http://arxiv.org/abs/quant-ph/0007009
Thorne, K. S. (1993), "Closed Timelike Curves," GRP-340, CalTech, Pasadena, CA
Polchinski, J. (1995), "
Dirichlet Branes and Ramond-Ramond Charges," Phys. Rev. Lett., 75, 4724-4727
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Nielsen, M. A. (2003), "Simple Rules for a Complex Quantum World," Sci. Am., 13, 25-33
Dür, W. and Briegel, H.-J. (2003), "
Entanglement purification for Quantum Computation," Phys. Rev. Lett., 90, 067901
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Weinberg's non-linear quantum mechanics and superluminal communications," Phys. Lett. A, 143, 1-2
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Squeezed-Vacuum Assisted Quantum Teleportation," Paper No. 7 th CEWQO/015, in Proc. 7 th Central-European Workshop on Quantum Optics, Hungary
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Matter-Wave Entanglement and Teleportation by Molecular Dissociation and Collisions," Phys. Rev. Lett., 86, 3180-3183
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Traversable wormholes: Some simple examples", Phys. Rev. D, 39, 3182- 3184
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'Spooky Action' Passes a Relativistic Test," Science, 287, 1909-1910
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Can we make sense of the measurement process in relativistic quantum mechanics?," Phys. Rev. D, 24, 359-370
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A single quantum cannot be cloned," Nature, 299, 802-803
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Rhine, L. E. (1970), Mind over Matter: Psychokinesis, Macmillan, New York
Bose, S., Knight, P. L., Plenio, M. B. and Vedral, V. (1999), "
Proposal for Teleportation of an Atomic State via Cavity Decay," Phys. Rev. Lett., 83, 5158-5161
Braunstein, S., Fuchs, C., Kimble, H. and van Loock, P. (2001), "
Quantum versus classical domains for teleportation with continuous variables," Phys. Rev. A, 64, 022321
Wheeler, J. A. (1957), Rev. Mod. Phys., 29, 463 -
RevModPhys.29.463
Vallee, J. (1988), Dimensions: A Casebook of Alien Contact, Ballantine Books, New York
Tittel, W., Brendel, J., Gisin, B., Herzog, T., Zbinden, H. and Gisin, N. (1998a), "
Experimental demonstration of quantum correlations over more than 10 km," Phys. Rev. A, 57, 3229-3232
Visser, M. (1995), Lorentzian Wormholes: From Einstein to Hawking, AIP Press, New York
Kim, Y.-H., Kulik, S. P. and Shih, Y. (2001), "
Quantum Teleportation of a Polarization State with a Complete Bell State Measurement," Phys. Rev. Lett., 86, 1370-1373
Mittelstaedt, P. (2000), "
What if there are superluminal signals?," Eur. Phys. J. B, 13, 353-355
Einstein, A., Podolsky, B. and Rosen, N. (1935), "
Can quantum mechanical description of physical reality be considered complete?," Phys. Rev., 47, 777-780
Zubairy, S. (1998), "
Quantum teleportation of a field state," Phys. Rev. A, 58, 4368-4372
McConnell, A. J. (1957), Applications of Tensor Analysis, Dover Publ., New York, pp. 163-217
Wolf, F. A. (1988), Parallel Universes: The Search for Other Worlds, Simon and Schuster, New York
Hald, J., Sørensen, J. L., Schori, C. and Polzik, E. S. (1999), "
Spin Squeezed Atoms: A Macroscopic Entangled Ensemble Created by Light," Phys. Rev. Lett., 83, 1319-1322
Dicke, R. H. (1957), "
Gravitation without a principle of equivalence," Rev. Mod. Phys., 29, 363- 376
Heitler, W. (1954), The Quantum Theory of Radiation (3 rd ed.), Oxford University Press, London, p. 113.
Siegfried, T. (2000), The Bit and the Pendulum, John Wiley & Sons
Volkov, A. M., Izmest'ev, A. A. and Skrotskii, G. V. (1971), "The propagation of electromagnetic waves in a Riemannian space," Sov. Phys. JETP, 32, 686-689
Hartle, J. B. and Hawking, S. W. (1983), "
Wave function of the Universe," Phys. Rev. D, 28, 2960-2975
Groller, Capt. R. (1987), "Soviet Psychotronics - a Closer Look," Military Intelligence, PB 34- 87-1 (Test), pp. 43-44
Bremseth, Cmdr. L. R. (2001), Unconventional Human Intelligence Support: Transcendent and Asymmetric Warfare Implications of Remote Viewing, Thesis, Marine War College
Haugan, M. P. and Will, C. M. (1977), "
Principles of equivalence, Eötvös experiments, and gravitational red-shift experiments: The free fall of electromagnetic systems to post—post- Coulombian order," Phys. Rev. D, 15, 2711-2720
Groller, Capt. R. (1986), "Soviet Psychotronics - a State of Mind," Military Intelligence, 12, no. 4, pp. 18-21, 58
Hypersonic
(
wiki) Hypersonic flight
Lockheed Martin Hypersonics -
https://www.lockheedmartin.com/en-us/capabilities/hypersonics.html
Raytheon Hypersonics -
https://www.raytheonmissilesanddefense.com/capabilities/hypersonics
Dynetics Hypersonics -
https://www.dynetics.com/hypersonics/
Hypersonic News
2021-02-09 - US Army begins equipping first unit with hypersonic capability -
https://www.defensenews.com/land/2021/02/09/us-army-begins-equipping-first-unit-with-hypersonic-capability/
2020-10-01 - DOD Official Discusses Hypersonics Development -
https://www.defense.gov/Explore/News/Article/Article/2368289/dod-official-discusses-hypersonics-development/
2020-08-05 - How the DoD plans to meet its ambitious hypersonic missile test schedule -
https://www.defensenews.com/digital-show-dailies/smd/2020/08/05/heres-how-the-dod-plans-to-meet-its-ambitious-hypersonic-missile-test-schedule/
2019-10-14 - How the US Army is building a hypersonic weapons business -
https://www.defensenews.com/digital-show-dailies/ausa/2019/10/14/how-the-us-army-is-building-a-hypersonic-weapons-business/
2019-08-30 - Here's who will build and integrate the first hypersonic weapon system prototype -
https://www.defensenews.com/land/2019/08/30/heres-who-will-build-and-integrate-the-first-hypersonic-weapon-system-prototype/
2019-08-07 - Final hypersonic missile contract awards imminent as US Army preps to shoot one in FY21 -
https://www.defensenews.com/digital-show-dailies/smd/2019/08/07/final-hypersonic-missile-contract-awards-imminent-as-army-preps-to-shoot-one-in-fy21/
2019-06-04 - Coming soon to the US Army: Combat-capable hypersonic and laser weapons -
https://www.defensenews.com/land/2019/06/05/coming-soon-to-the-us-army-combat-capable-hypersonic-and-laser-weapons/
2019-06-03 - Here's What The Army's First Ever Operational Hypersonic Missile Unit Will Look Like -
https://www.thedrive.com/the-war-zone/28340/heres-what-the-armys-first-ever-operational-hypersonic-missile-unit-will-look-like
2019-05-01 - The emerging world of hypersonic weapons technology -
https://www.militaryaerospace.com/power/article/14033431/the-emerging-world-of-hypersonic-weapons-technology
2018-03-20 - US Army to demo precision strike, hypersonics, ramjet capabilities in just a few years -
https://www.defensenews.com/land/2018/03/20/army-to-demonstrate-precision-strike-hypersonics-and-ramjet-capabilities-in-just-a-few-years/
Universities
California Institute of Technology -
http://www.caltech.edu/
Institute for Advanced Study -
https://www.ias.edu/
Johns Hopkins University Applied Physics Laboratory -
https://www.jhuapl.edu/
Max Planck Society -
https://www.mpg.de
Quantum Computing
2021-02-04 - IBM's roadmap for building an open quantum software ecosystem -
https://www.ibm.com/blogs/research/2021/02/quantum-development-roadmap/
Space
(
wiki) Artemis Program
European Space Agency (ESA) -
https://www.esa.int/
Japan Aerospace Exploration Agency (JAXA) -
http://www.jaxa.jp/
Canadian Space Agency (CSA) -
http://www.asc-csa.gc.ca/
Italian Space Agency (ASI) -
http://www.asi.it/
Australian Space Agency (ASA) -
http://space.gov.au/
UK Space Agency (UKSA) -
https://www.gov.uk/government/organisations/uk-space-agency
United Arab Emirates Space Agency (UAESA) -
https://space.gov.ae/
State Space Agency of Ukraine -
http://www.nkau.gov.ua/
Brazilian Space Agency (AEB) -
http://www.aeb.gov.br/
Space News
2021-02-02 - Experts warn of brewing space mining war among US, China and Russia -
https://www.mining.com/experts-warn-of-brewing-space-mining-war-among-us-china-and-russia/
2019-09-20 - Russia and China Are Teaming Up to Explore the Moon -
https://www.space.com/russia-china-moon-exploration-partnership.html
2019-04-11 - USAF Secretary Gives Ominous Warning That Show Of Force Needed To Deter Space Attacks -
https://www.thedrive.com/the-war-zone/27396/usaf-secretary-gives-ominous-warning-that-show-of-force-needed-to-deter-space-attacks
Warp Drive
(
wiki) Warp drive
(
wiki) Speed of light
(
wiki) Faster-than-light
(
wiki) Wormhole
(
wiki) Soliton
(
wiki) Alcubierre drive
(
wiki) Harold G. White
(
wiki) White-Juday warp-field interferometer
2021-03-12 - The world just moved even closer to a real, working warp drive -
https://www.popularmechanics.com/science/a35820869/warp-drive-possible-with-conventional-physics/
2021-03-09 - Breaking the warp barrier: hyper-fast solitons in Einstein-Maxwell-plasma theory -
https://iopscience.iop.org/article/10.1088/1361-6382/abe692
2021-03-09 - Warp drive basics -
https://arxiv.org/abs/2103.05610
2020-09-01 - Introducing physical warp drives -
https://arxiv.org/pdf/2102.06824.pdf
2000-09-05 - The warp drive: hyper-fast travel within general relativity -
https://arxiv.org/abs/gr-qc/0009013
Davis, E.W. and Puthoff, H.E. (2006) -
Experimental Concepts for Generating Negative Energy in
the Laboratory
Vacuum Engineering
Hal Puthoff -
https://earthtech.org/pubs/puthoff/
(
wiki) Harold E. Puthoff
(
wiki) Robert L. Forward
Forward, Robert L. (15 August 1984) -
Extracting electrical energy from the vacuum by cohesion of charged foliated conductors
Energy
(
wiki) Kardashev scale
(
wiki) Dyson sphere
(
wiki) Star lifting
(
wiki) Stellar engine
NASA
Ames Research Center -
nasa.gov/centers/ames
Armstrong Flight Research Center -
nasa.gov/centers/armstrong
Glenn Research Center -
nasa.gov/centers/glenn
Goddard Space Flight Center -
nasa.gov/centers/goddard
Goddard Institute of Space Studies -
giss.nasa.gov/
Katherine Johnson IV and V Facility -
nasa.gov/centers/ivv
Jet Propulsion Laboratory -
nasa.gov/centers/jpl
Johnson Space Center -
nasa.gov/centers/johnson
Kennedy Space Center -
nasa.gov/centers/kennedy
Langley Research Center -
nasa.gov/centers/langley
Marshall Space Flight Center -
nasa.gov/centers/marshall
Michoud Assembly Facility -
nasa.gov/centers/marshall/michoud
NASA Engineering and Safety Center -
nasa.gov/offices/nesc
NASA Headquarters -
nasa.gov/centers/hq
NASA Safety Center -
nasa.gov/offices/nsc
NASA Shared Services Center -
https://www.nasa.gov/centers/nssc
Plum Brook Station -
nasa.gov/centers/glenn/about/testfacilities
Stennis Space Center -
nasa.gov/centers/stennis
Wallops Flight Facility -
nasa.gov/centers/wallops
White Sands Test Facility -
nasa.gov/centers/wstf
2020-04-07 - Deceleration of Interstellar Spacecraft Utilizing Antimatter - (
nasa)
Propulsion
(
wiki) Spacetime
(
wiki) Electrically powered spacecraft propulsion
(
wiki) Piezoelectricity
(
wiki) Lead zirconate titanate (PZT)
(
wiki) Ferroelectric ceramics
(
wiki) Barium titanate
(
wiki) Czochralski method
(
wiki) Single crystal
(
wiki) London penetration depth
(
wiki) Electrostatic generator
(
wiki) Pelletron
(
wiki) Thermoelectric generator
(
wiki) Mossbauer effect
(
wiki) Interstellar travel
(
wiki) Salvatore Pais
(
wiki) Aerospace engineering
(
wiki) Bussard ramjet
(
wiki) Fusion rocket
(
wiki) Spacecraft
(
wiki) Breakthrough Propulsion Physics Program
(
wiki) Hall-effect thruster
(
wiki) Casimir effect
(
wiki) Lamb shift
(
wiki) EmDrive
(
wiki) Quantum vacuum thruster
(
wiki) Quantum field theory
(
wiki) Quantum gravity
(
wiki) Quantum mechanics
(
wiki) Higgs mechanism
(
wiki) Poynting vector
(
wiki) Vacuum permittivity
(
wiki) Polaron
(
wiki) Bipolaron
(
wiki) Condensed matter physics
(
wiki) Cooper pair
(
wiki) Boson
(
wiki) Phonon
(
wiki) Applied physics
(
wiki) Meissner effect
(
wiki) Magnetic flux
(
wiki) Magnetic nozzle
1985-01-31 - Antiproton Annihilation Propulsion -
https://apps.dtic.mil/dtic/tr/fulltext/u2/a160734.pdf
Frontiers of Propulsion Science (Progress in Astronautics and Aeronautics) - Marc Millis and Eric Davis - (
amazon)
How is antimatter produced
Prerequisites for Space Drive Science
Millis, M. G., "
Challenge to Create the Space Drive", Journal of Propulsion and Power, Vol. 13, No. 5, 1997, pp. 577-582.
Bertolami, O., and Tajmar, M., Gravity Control and Possible Infulence on Space Propulsion: A Scientific Study. ESA CR (P) 4365, on Contract ESTEC 15464/01/NL/Sfe, 2002.
Hartle, J. B., Gravity; An Introduction to Einstein's General Relativity, Addison, Wesley, San Francisco, CA, 2003.
Carroll, B. W., and Ostlie, D. A., An Introduction to Modern Astrophysics, 2nd ed., Pearson Education, Saddle River, NJ, 2007.
Robitaille, P.-M., "WMAP: A Radiological Analysis," Progress on Physics, Vol. 1, 2007, pp. 3-18.
Spergel, D. N., et al. "
Three-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Implications for Cosmology," The Astrophysical Journal Supplement Series, Vol. 170, No. 2, 2007, pp. 377-408.
Riess, A. G., et al. "
BVRI Light Curves for 22 Type Ia Supernovae," Astronomical Joural, Vol. 117, 1999, pp. 707-724.
Goldhaber, G., et al. "
Timescale stretch Parameterization of Type Ia Supernova B-Band Light Curves," The Astrophysical Journal, Vol. 558, part 1, 2001, pp. 359-368.
Huterer, D., and Turner, M. S., "
Prospects for Probing the Dark Energy via Supernova Distance Measurements," Physical Review D, Vol. 60, No. 8, 1999, pp. 081301-081306.
Rubin, V. C., and Ford, W. K., Jr., "
Rotation of the Andromeda Nebula from a Sepctroscopic Survey of Emission Regions," Astrophysical Journal, Vol. 159, 1970, pp. 379-403.
Kneib, J. P., et al. "
Hubble Space Telescope Observations of the Lensing Cluster Abell 2218," Astrophysical Journal, Vol. 471, 1996, pp. 646-656.
Milgrom, M., "
Dynamics with a Non-Standard Inertia-Acceleration Relation: An Alternative to Dark Matter in Galactic Systems," Annals of Physics, Vol. 229, 1994, pp. 384-415.
Milgrom, M., "
MOND - Theoretical Aspects," New Astronomy Reviews, Vol. 46, 2002, pp. 741-752.
Rabounski, D., "The Relativistic Effect of the Deviation Between the CMB Temperatures Obtained by the COBE Satellite," Progress in Physics, Vol. 1, 2007, pp. 24-26.
Misner, C. W., Thorne, K. S., and Wheeler, J. A.,
Gravitation, W. H., Freeman & Co., New York 1973.
Rider, T. H., "
Fundamental Constraints on Large-Scale Antimatter Rocket Propulsion," Journal of Propulsion and Power, Vol. 13, No. 3, 1997, pp. 435-443.
Taylor, E. F., and Wheeler, J. A., Spacetime Physics, W.H. Freeman and Co., San Francisco, CA 1966.
Flynn, C., "
On the Mass-to-Light Ratio of the Local Galactic Disc and the Optical Luminosity of the Galaxy," Monthly Notices of the Royal Astronomical Society, Vol. 372, 2006, pp. 1149-1160.
Cutnell, J.D., and Johnson, K.W. Physics, 3rd ed. Wiley, New York, 1995, p. 441.
Eddington, A.S., Space, Time and Gravitation, Cambridge University Press, Cambridge, U.K., 1920.
de Felice, F., "On the Gravitational Field Acting as an Optical Medium," General Relativity and Gravitation, Vol. 2 1971, pp. 347-357.
Evans, J., Nandi, K.K., and Islam, A., "
The Optical-Mechanical Analogy in General Relativity: Exact Newtonian Forms for the Equations of Motion of Particles and Photons," General Relativity and Gravitation, Vol. 28, 1996, pp. 413-439.
Puthoff, H.E., "
Polarizable-Vacuum (PV) Approach to General Relativity," Foundations of Physics, Vol. 32, 2002, pp. 927-943.
Mach, E., The Science of Mechanics, 5th English ed., Open Court Publishing Co., London, 1942.
Barbour, J.B., and Pfister, H. (eds), Mach's Principle: From Newton's Bucket to QUantum Gravity (Einstein Studies), Birkhauser, Boston, 1995.
Weinberg, S., Gravitation and Cosmology: Principles and Applications of the General Theory of Relativity, Wiley, New York, 1972.
Bondi, H., and Samuel, J., "The Lense-Thirring Effect and Mach's Principle," Physics Letters A, Vol. 228, pp. 121-126.
Journals
Classical and Quantum Gravity -
https://iopscience.iop.org/journal/0264-9381
Journal of the British Interplanetary Society -
https://www.jbis.org.uk/
Physical Review A -
https://journals.aps.org/pra/
Journal of Propulsion and Power -
https://arc.aiaa.org/loi/jpp
Links
(
wiki) Klystron
(
wiki) Quantum chromodynamics
(
wiki) Superfluidity
(
wiki) Yamato 1
(
wiki) Magnetohydrodynamic drive
(
wiki) Aluminum oxynitride
(
wiki) Transparent ceramics
Surmet -
http://www.surmet.com/ - ALON
Boron fiber: The original high-performance fiber -
https://www.compositesworld.com/articles/boron-fiber-the-original-high-performance-fiber
Institute for Advanced Studies at Austin -
https://earthtech.org/
News
2021-02-03 - U.S. Navy Has Patents on Tech It Says Will 'Engineer the Fabric of Reality' -
https://www.vice.com/en/article/4adpv9/us-navy-has-patents-on-tech-it-says-will-engineer-the-fabric-of-reality
2020-12-16 - Emails Show Navy's 'UFO' Patents Went Through Significant Internal Review, Resulted In A Demo -
https://www.thedrive.com/the-war-zone/37134/emails-show-navys-ufo-patents-went-through-significant-internal-review-resulted-in-a-demo
2020-01-22 - The Secretive Inventor Of The Navy's Bizarre 'UFO Patents' Finally Talks -
https://www.thedrive.com/the-war-zone/31798/the-secretive-inventor-of-the-navys-bizarre-ufo-patents-finally-talks
2019-10-16 - The Plasma Compression Fusion Device - Enabling Nuclear Fusion Ignition -
https://ieeexplore.ieee.org/abstract/document/8871349
2019-08-02 - Navy's Advanced Aerospace Tech Boss Claims Key 'UFO' Patent Is Operable -
https://www.thedrive.com/the-war-zone/29232/navys-advanced-aerospace-tech-boss-claims-key-ufo-patent-is-operable
2019-07-30 - Congressman Has Written An Official Letter To The Navy Demanding Answers On UFOs -
https://www.thedrive.com/the-war-zone/29216/congressman-has-written-a-official-letter-to-the-navy-demanding-answers-on-ufos
2019-06-28 - Docs Show Navy Got 'UFO' Patent Granted By Warning Of Similar Chinese Tech Advances -
https://www.thedrive.com/the-war-zone/28729/docs-show-navy-got-ufo-patent-granted-by-warning-of-similar-chinese-tech-advances
2019-06-20 - Recent UFO Encounters With Navy Pilots Occurred Constantly Across Multiple Squadrons -
https://www.thedrive.com/the-war-zone/28627/recent-ufo-encounters-with-navy-pilots-occurred-constantly-across-multiple-squadrons
2019-04-26 - What The Hell Is Going On With UFOs And The Department Of Defense? -
https://www.thedrive.com/the-war-zone/27666/what-the-hell-is-going-on-with-ufos-and-department-of-defense
2017-09-19 - High Frequency Gravitational Waves - Induced Propulsion -
https://www.sae.org/publications/technical-papers/content/2017-01-2040/
Antimatter Production Co on Twitter -
https://twitter.com/BuyAntimatter
Antimatter Production Co