Principles of inertial confinement fusion - physics of implosion and the concept of inertial fusion energy
- 1 September 1996
- journal article
- Published by IOP Publishing in Reports on Progress in Physics
- Vol. 59 (9) , 1071-1131
- https://doi.org/10.1088/0034-4885/59/9/002
Abstract
The principles of laser fusion are the implosion of fuel pellets and the inertial confinement of fusion plasma produced by implosion. The process contains a lot of interesting physics, some of which is related to other newly developing fields such as astrophysics, hydrodynamics with radiation and turbulence, nonequilibrium atomic physics, and material science of extreme conditions. This, therefore, opens up new research fields and methods in basic science. On the other hand, fusion research aims at energy development for the future. The state of the art of inertial confinement fusion has reached a level where a goal-oriented program could be arranged for physics investigations and also technological developments.Keywords
This publication has 49 references indexed in Scilit:
- Thermonuclear Burn Performance of Volume-Ignited and Centrally Ignited Bare Deuterium-Tritium MicrospheresJapanese Journal of Applied Physics, 1995
- Indirectly Driven, High Convergence Inertial Confinement Fusion ImplosionsPhysical Review Letters, 1994
- High-density compression experiments at ILE, OsakaLaser and Particle Beams, 1991
- Implosion symmetry and burn efficiency in ICFLaser and Particle Beams, 1991
- Super-transition-arrays: A model for the spectral analysis of hot, dense plasmaPhysical Review A, 1989
- Laser Absorption and Heat Transport by Non-Maxwell-Boltzmann Electron DistributionsPhysical Review Letters, 1983
- Critical elements of high gain laser fusionJournal of Fusion Energy, 1981
- Elecron Energy Transport in Steep Temperature Gradients in Laser-Produced PlasmasPhysical Review Letters, 1981
- Variance of the distributions of energy levels and of the transition arrays in atomic spectraPhysical Review A, 1979
- Flame Propagation and Overdense Heating in a Laser Created PlasmaPhysics of Fluids, 1971