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Hot-electron deposition and implosion mechanisms within electron shock ignition
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作者 Wan-Li Shang Xing-Sen Che +12 位作者 Ao Sun Hua-Bing Du Guo-Hong Yang Min-Xi Wei Li-Fei Hou Yi-Meng Yang Wen-Hai Zhang shao-yong tu Feng Wang Hai-En He Jia-Min Yang Shao-En Jiang Bao-Han Zhang 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第10期354-362,共9页
A hot-electron driven scheme can be more effective than a laser-driven scheme within suitable hot-electron energy and target density. In our one-dimensional (1D) radiation hydrodynamic simulations, 20× pressure e... A hot-electron driven scheme can be more effective than a laser-driven scheme within suitable hot-electron energy and target density. In our one-dimensional (1D) radiation hydrodynamic simulations, 20× pressure enhancement was achieved when the ignitor laser spike was replaced with a 60-keV hot-electron spike in a shock ignition target designed for the National Ignition Facility (NIF), which can lead to greater shell velocity. Higher hot-spot pressure at the deceleration phase was obtained owing to the greater shell velocity. More cold shell material is ablated into the hot spot, and it benefits the increases of the hot-spot pressure. Higher gain and a wider ignition window can be observed in the hot-electron-driven shock ignition. 展开更多
关键词 shock ignition inertial confinement fusion hot electron plasma fusion
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