论文标题

精确考虑电子惯性在无碰撞等离子体湍流的杂交型模拟中的重要性:1。2D极限

Importance of accurate consideration of the electron inertia in hybrid-kinetic simulations of collisionless plasma turbulence: 1. The 2D limit

论文作者

Jain, Neeraj, Muñoz, Patricio, Tabriz, Meisam Farzalipour, Rampp, Markus, Büchner, Jörg

论文摘要

在无冲孔空间和天体物理等离子体中,磁能的耗散机制尚不清楚。它的研究需要对无碰撞血浆湍流中能量转移的有效动力学模拟。在这方面,将离子视为颗粒和电子作为惯性液的杂种 - 运动模拟,最近开始引起重大的兴趣。杂种 - 运动模型通过忽略电子动力学效应来描述离子和电子量表过程,从而使计算的需求少于完全动力学等离子体模型。杂种 - 运动代码求解离子(Eulerian Vlasov-Hybrid代码)的Vlasov方程,或将离子作为宏观粒子(Lagrangian-in-Cell(PIC) - 杂化代码)的运动方程。他们使用不同的近似值考虑电子流体的惯性。我们通过采用我们最近大规模平行的三维PIC-HYBRID代码主管来检查这些近似值的有效性,该代码主管认为电子惯性没有任何共同的近似值。特别是我们报告了二维无碰撞血浆湍流的模拟结果。我们得出的结论是,使用杂种型代码获得的仿真结果,这些杂种代码使用近似值来描述电子惯性,需要谨慎解释。据我们所知,我们还讨论了首席的平行可伸缩性,这是第一个没有近似值的PIC杂交代码,它描述了惯性电子流体。

The dissipation mechanism of the magnetic energy in turbulent collisionless space and astrophysical plasmas is still not well understood. Its investigation requires efficient kinetic simulations of the energy transfer in collisionless plasma turbulence. In this respect, hybrid-kinetic simulations, in which ions are treated as particles and electrons as an inertial fluid, have begun to attract a significant interest recently. Hybrid-kinetic models describe both ion- and electron scale processes by ignoring electron kinetic effects so that they are computationally much less demanding compared to fully kinetic plasma models. Hybrid-kinetic codes solve either the Vlasov equation for the ions (Eulerian Vlasov-hybrid codes) or the equations of motion of the ions as macro-particles (Lagrangian Particle-in-Cell (PIC)-hybrid codes). They consider the inertia of the electron fluid using different approximations. We check the validity of these approximations by employing our recently massively parallelized three-dimensional PIC-hybrid code CHIEF which considers the electron inertia without any of the common approximations. In particular we report the results of simulations of two-dimensional collisionless plasma turbulence. We conclude that the simulation results obtained using hybrid-kinetic codes which use approximations to describe the electron inertia need to be interpreted with caution. We also discuss the parallel scalability of CHIEF, to the best of our knowledge, the first PIC-hybrid code which without approximations describes the inertial electron fluid.

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