Naseri N, Bochkarev S G, Bychenkov V Y, Khudik V, Shvets G
Institute for Fusion Studies and Department of Physics, The University of Texas, 1 University Station C1500, Austin, 78712, TX, USA.
Department of Physics and Astronomy, Middle Tennessee State University, Wiser-Patten Science Hall, 422 Old Main Cir, Murfreesboro, 37132, TN, USA.
Sci Rep. 2022 May 5;12(1):7327. doi: 10.1038/s41598-022-11163-2.
Relativistic collisionless shocks are considered responsible for particle energization mechanisms leading to particle acceleration. While electron energization in shock front region of electron/ion collisionless shocks are the most studied, the mechanism of electron energization in interaction with self-generated magnetic vortices (MVs) in the upstream region is still unclear. We investigate electron energization mechanism in the upstream region of electron/ion relativistic collisionless shocks, using two dimensional particle-in-cell (PIC) simulations. We discuss mechanism of electron energization which takes place in the upstream region of the shock, where the counter stream particles interact with incoming flow. The energy gain of electrons happens during their interaction with evolving fields of self-generated magnetic vortices in this region. Three Fermi-like electron energization scenarios are discussed. Stochastic acceleration of electrons in interaction with fields of MV leads to anisotropic heating of fast electrons due to diffusion in the momentum space of electrons and, finally, synergetic effect of evolving fields of MVs leads to the formation of a power-law tail of supra-thermal particles.
相对论性无碰撞激波被认为是导致粒子加速的粒子能量激发机制的原因。虽然电子/离子无碰撞激波前沿区域的电子能量激发是研究最多的,但上游区域中电子与自生磁涡(MVs)相互作用时的电子能量激发机制仍不清楚。我们使用二维粒子模拟(PIC)研究了电子/离子相对论性无碰撞激波上游区域的电子能量激发机制。我们讨论了在激波上游区域发生的电子能量激发机制,在该区域反向流粒子与入射流相互作用。电子的能量增益发生在它们与该区域中自生磁涡不断演化的场相互作用的过程中。讨论了三种类似费米的电子能量激发情形。电子与MV场相互作用时的随机加速由于电子动量空间中的扩散导致快速电子的各向异性加热,最终,MV不断演化的场的协同效应导致形成超热粒子的幂律尾部。