Simulations of compression and thermonuclear burn of an indirect drive reactor-size inertial fusion target
Author:
Publisher
Elsevier BV
Subject
General Physics and Astronomy
Reference21 articles.
1. Design and numerical simulations of an indirectly driven reactor-size inertial fusion capsule
2. Theoretical analysis and numerical simulations of implosions of reactor size indirect drive inertial confinement fusion
3. Numerical simulation and theoretical analysis of implosion, ignition and burn of heavy-ion-beam reactor-size ICF targets
4. Range shortening, radiation transport, and Rayleigh-Taylor instability phenomena in ion-beam-driven inertial-fusion-reactor-size targets: Implosion, ignition, and burn phases
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1. Proposed High Energy Density Physics Research Using Intense Particle Beams at FAIR: The HEDgeHOB Collaboration;IEEE Transactions on Plasma Science;2009-07
2. Inertial confinement fusion using hohlraum radiation generated by heavy-ion clusters;Physics of Plasmas;1997-03
3. A Study of Energy Output from Implosion of a Reactor-Size Indirect Drive Reduced Tritium Inertial Fusion Target;Fusion Technology;1996-01
4. Analysis of compression, thermonuclear burn and hydrodynamic stability of a reactor-size radiation driven inertial fusion target;Plasma Physics and Controlled Fusion;1995-04-01
5. Development of high gain reduced tritium targets for inertial fusion;Fusion Engineering and Design;1994-09
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