首页> 外文期刊>The Astrophysical journal >NONRELATIVISTIC COLLISIONLESS SHOCKS IN WEAKLY MAGNETIZED ELECTRON-ION PLASMAS: TWO-DIMENSIONAL PARTICLE-IN-CELL SIMULATION OF PERPENDICULAR SHOCK
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NONRELATIVISTIC COLLISIONLESS SHOCKS IN WEAKLY MAGNETIZED ELECTRON-ION PLASMAS: TWO-DIMENSIONAL PARTICLE-IN-CELL SIMULATION OF PERPENDICULAR SHOCK

机译:弱磁化电子离子等离子体中的非相对论无集电击:垂直电击的二维胞内颗粒模拟

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A two-dimensional particle-in-cell simulation is performed to investigate weakly magnetized perpendicular shocks with a magnetization parameter of σ = 6 × 10–5, which is equivalent to a high Alfvén Mach number M A of ~130. It is shown that current filaments form in the foot region of the shock due to the ion-beam-Weibel instability (or the ion filamentation instability) and that they generate a strong magnetic field there. In the downstream region, these current filaments also generate a tangled magnetic field that is typically 15 times stronger than the upstream magnetic field. The thermal energies of electrons and ions in the downstream region are not in equipartition and their temperature ratio is T e/T i ~ 0.3-0.4. Efficient electron acceleration was not observed in our simulation, although a fraction of the ions are accelerated slightly on reflection at the shock. The simulation results agree very well with the Rankine-Hugoniot relations. It is also shown that electrons and ions are heated in the foot region by the Buneman instability (for electrons) and the ion-acoustic instability (for both electrons and ions). However, the growth rate of the Buneman instability is significantly reduced due to the relatively high temperature of the reflected ions. For the same reason, ion-ion streaming instability does not grow in the foot region.
机译:进行了二维单元格内粒子模拟,以研究磁化参数为σ= 6×10-5的弱磁化垂直激波,这相当于〜130的高Alfvén马赫数M A。结果表明,由于离子束-魏贝尔不稳定性(或离子丝化不稳定性),电流丝在电击的脚部区域形成,并在此处产生强磁场。在下游区域,这些电流丝还产生纠结的磁场,该磁场通常比上游磁场强15倍。下游区域电子和离子的热能不均分,它们的温度比为T e / T i〜0.3-0.4。在我们的模拟中未观察到有效的电子加速,尽管一小部分离子在撞击时反射时略有加速。仿真结果与兰金-休格尼奥特关系非常吻合。还表明,由于布氏曼不稳定性(对于电子)和离子声不稳定性(对于电子和离子),在脚部区域中电子和离子被加热。但是,由于反射离子的温度相对较高,Buneman不稳定性的增长率大大降低。出于相同的原因,在脚部区域中不会出现离子-离子流不稳定性。

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