Journal of Propulsion and Power · 1991 · 15 citations · 10 references
Matter-antimatter AnnihilationEngineeringFusion PowerPlasma PhysicsMagnetic Confinement FusionMagnetismAnnihilation RatePlasma EnginesControlled Nuclear FusionMagnetohydrodynamicsPlasma ConfinementPhysicsMagnetic ConfinementPropulsionInertial Fusion EnergyMagnetic Confinement Fusion PhysicsAerospace EngineeringNatural SciencesParticle PhysicsSpecific EnergyInertial Confinement FusionAerospace Propulsion
The reaction of the matter-antimatter annihilation, with its specific energy being over 250 times the specific energy released in nuclear fusion, is considered as an energy source for spacecraft propulsion. A concept of a magnetically confined pulsed plasma engine is described. In this concept, antiproton beams are injected axially into a pulsed magnetic mirror system, where they annihilate with an initially neutral hydrogen gas; the resulting charge annihilation products transfer energy to the hydrogen propellant, which is then exhausted through one end of the pulsed mirror system to provide thrust. Numerical simulations were developed to calculate the annihilation rate of antiprotons in hydrogen and to follow the resulting ion, muon, and electron/positron number density evolutions.
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<i>Rocket Propulsion Elements</i>
George P. Sutton, Howard S. Seifert · Physics Today · 1950 · 1.8K citations
Edward M. Eyring · Nuclear Technology · 1978 · 1.3K citations
Journal of the British interplanetary society
Carl Sagan · Icarus · 1975 · 1.3K citations
Space Sciences, British Interplanetary Society, Space Policy +1
Physics of Electric Propulsion
R. G. Jahn, F. A. Lyman · Journal of Applied Mechanics · 1969 · 837 citations · Full text
Controlled Thermonuclear Reactions
Nature · 1957 · 403 citations
Chemical Engineering, Thermonuclear Reactions, Engineering +6