The link between shocks, turbulence, and magnetic reconnection in collisionless plasmas

物理 磁重联 等离子体 湍流 太阳风 计算物理学 磁流体力学 磁层 天体物理等离子体 机械 核物理学
作者
H. Karimabadi,V. Roytershteyn,H. X. Vu,Y. A. Omelchenko,J. D. Scudder,W. Daughton,A. P. Dimmock,K. Nykyri,Minping Wan,D. G. Sibeck,Mahidhar Tatineni,Amitava Majumdar,Burlen Loring,Berk Geveci
出处
期刊:Physics of Plasmas [American Institute of Physics]
卷期号:21 (6) 被引量:225
标识
DOI:10.1063/1.4882875
摘要

Global hybrid (electron fluid, kinetic ions) and fully kinetic simulations of the magnetosphere have been used to show surprising interconnection between shocks, turbulence, and magnetic reconnection. In particular, collisionless shocks with their reflected ions that can get upstream before retransmission can generate previously unforeseen phenomena in the post shocked flows: (i) formation of reconnecting current sheets and magnetic islands with sizes up to tens of ion inertial length. (ii) Generation of large scale low frequency electromagnetic waves that are compressed and amplified as they cross the shock. These “wavefronts” maintain their integrity for tens of ion cyclotron times but eventually disrupt and dissipate their energy. (iii) Rippling of the shock front, which can in turn lead to formation of fast collimated jets extending to hundreds of ion inertial lengths downstream of the shock. The jets, which have high dynamical pressure, “stir” the downstream region, creating large scale disturbances such as vortices, sunward flows, and can trigger flux ropes along the magnetopause. This phenomenology closes the loop between shocks, turbulence, and magnetic reconnection in ways previously unrealized. These interconnections appear generic for the collisionless plasmas typical of space and are expected even at planar shocks, although they will also occur at curved shocks as occur at planets or around ejecta.
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