Theoretical and simulation research of hydrodynamic instabilities in inertial-confinement fusion implosions
Lifeng Wang(Shanghai Jiao Tong University), Wei-Yan Zhang(Institute of Applied Physics and Computational Mathematics), J. F. Wu(Institute of Applied Physics and Computational Mathematics), Zhengfeng Fan(Union Hospital), X. T. He(Peking University), Jie Liu(Southwest Jiaotong University), Guo Jia(Chinese Academy of Sciences), Yingjun Li(Shanghai Jiao Tong University), Chuang Xue(Institute of Applied Physics and Computational Mathematics), Yongkun Ding(Institute of Applied Physics and Computational Mathematics), Wenhua Ye(Shanghai Jiao Tong University), Hong-Yu Guo(Peking University), Min Wang(Institute of Applied Physics and Computational Mathematics), Wenyong Miao(China Academy of Engineering Physics), J.Q. Dong(Institute of Plasma Physics)
Cited by 82
Related Papers
Review of wearable thermoelectric energy harvesting: From body temperature to electronic systems
|Applied Energy|2019|572
Sulfur/Oxygen Codoped Porous Hard Carbon Microspheres for High‐Performance Potassium‐Ion Batteries
|Advanced Energy Materials|2018|453
Wearable thermoelectric generators for human body heat harvesting
|Applied Energy|2016|340
Employing Heavy Metal-Free Colloidal Quantum Dots in Solution-Processed White Light-Emitting Diodes
|Nano Letters|2010|210
Near‐Band‐Edge Electroluminescence from Heavy‐Metal‐Free Colloidal Quantum Dots
|Advanced Materials|2011|192