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Transition from equilibrium ignition to non-equilibrium burn for ICF capsules surrounded by a high-Z pusher

Ji W. Li, Lei Chang, Yun S. Li, Jing H. Li2011年被引用 3Nuclear FusionIF 3出版社

For the ICF capsule surrounded by a high-Z pusher which traps the radiation and confines the hot fuel, the fuel will first be ignited in thermal equilibrium with radiation at a much lower temperature than hot-spot ignition, which is also the low temperature ignition. Because of the lower areal density for ICF capsules, the equilibrium ignition must be developed into a non-equilibrium burn to shorten the reaction time and lower the drive energy. In this paper, the transition from the equilibrium ignition to non-equilibrium burn is discussed and the energy deposited by α particles required for the equilibrium ignition and non-equilibrium burn to occur is estimated.

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Inertial confinement fusionIgnition
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