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Three-dimensional fast magnetic reconnection driven by relativistic ultraintense femtosecond lasers
Ping, YL ; Zhong, JY ; Sheng, ZM ; Wang, XG ; Liu, B ; Li, YT ; Yan, XQ ; He, XT ; Zhang, J ; Zhao, G
刊名PHYSICAL REVIEW E
2014
卷号89期号:3
ISSN号1539-3755
通讯作者Ping, YL (reprint author), Chinese Acad Sci, Natl Astron Observ, Key Lab Opt Astron, Beijing 100012, Peoples R China.
中文摘要Three-dimensional fast magnetic reconnection driven by two ultraintense femtosecond laser pulses is investigated by relativistic particle-in-cell simulation, where the two paralleled incident laser beams are shot into a near-critical plasma layer to form a magnetic reconnection configuration in self-generated magnetic fields. A reconnection X point and out-of-plane quadrupole field structures associated with magnetic reconnection are formed. The reconnection rate is found to be faster than that found in previous two-dimensional Hall magnetohydrodynamic simulations and electrostatic turbulence contribution to the reconnection electric field plays an essential role. Both in-plane and out-of-plane electron and ion accelerations up to a few MeV due to the magnetic reconnection process are also obtained.
资助信息K. C. Wong Education Foundation; National Basic Research Program of China [2013CBA01502, 2013CBA01503, 2013CBA01504]; National Natural Science Foundation of China [10905004, 11135012, 11121504, 11273033, 11220101002, 11261140326, 10925421]
语种英语
公开日期2015-04-14
内容类型期刊论文
源URL[http://ir.iphy.ac.cn/handle/311004/59574]  
专题物理研究所_物理所公开发表论文_物理所公开发表论文_期刊论文
推荐引用方式
GB/T 7714
Ping, YL,Zhong, JY,Sheng, ZM,et al. Three-dimensional fast magnetic reconnection driven by relativistic ultraintense femtosecond lasers[J]. PHYSICAL REVIEW E,2014,89(3).
APA Ping, YL.,Zhong, JY.,Sheng, ZM.,Wang, XG.,Liu, B.,...&Zhao, G.(2014).Three-dimensional fast magnetic reconnection driven by relativistic ultraintense femtosecond lasers.PHYSICAL REVIEW E,89(3).
MLA Ping, YL,et al."Three-dimensional fast magnetic reconnection driven by relativistic ultraintense femtosecond lasers".PHYSICAL REVIEW E 89.3(2014).
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