Determination of deuterium–tritium critical burn-up parameter by four temperature theory
Author:
Publisher
AIP Publishing
Subject
Condensed Matter Physics
Link
http://aip.scitation.org/doi/pdf/10.1063/1.4938274
Reference24 articles.
1. Laser-driven isentropic hollow-shell implosions: the problem of ignition
2. Numerical simulation and theoretical analysis of implosion, ignition and burn of heavy-ion-beam reactor-size ICF targets
3. Increased Nuclear Fusion Yields of Inertially Confined DT Plasma due to Reheat
4. Volume ignition of laser driven fusion pellets and double layer effects
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1. Enhancing ICF Target Design: The Impact of Gold Particles as Pusher on Ignition and Burn;Iranian Journal of Science;2024-06-01
2. The investigation of inertial fusion burning requirements of deuterium-helium3 in degenerate plasma;Physics of Plasmas;2017-08
3. The effect of relativistic Compton scattering on thermonuclear burn of pure deuterium fuel;Physics of Plasmas;2016-08
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