A conservative scaling analysis of Z-pinch dynamic <i>Hohlraums</i> for inertial confinement fusion
Delong Xiao(Institute of Applied Physics and Computational Mathematics), Xiaojian Shu(Institute of Applied Physics and Computational Mathematics), Guanqiong Wang(Institute of Applied Physics and Computational Mathematics), Shunkai Sun(Institute of Applied Physics and Computational Mathematics), Ning Ding(Institute of Applied Physics and Computational Mathematics), Yingkui Zhao(Institute of Applied Physics and Computational Mathematics), Xiaoguang Wang(Institute of Applied Physics and Computational Mathematics), Wu Wen(Institute of Applied Physics and Computational Mathematics), Chongyang Mao(Institute of Applied Physics and Computational Mathematics)
Cited by 4
Related Papers
Theoretical and numerical research of wire array Z-pinch and dynamic hohlraum at IAPCM
|Matter and Radiation at Extremes|2016|40
Full-Circuit Simulation of Next Generation China Z-Pinch Driver CZ30
|IEEE Transactions on Plasma Science|2019|14
Plasma formation and ablation dynamics of stainless steel cylindrical liner
|Physics of Plasmas|2020|10
Ablated precursor plasma and evolution of magnetic field of exploding cylindrical thin liner
|Plasma Physics and Controlled Fusion|2021|10