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The Role of the Guide Field in Relativistic Pair Plasma Reconnection

机译:引导场在相对论对等离子重新连接中的作用

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We study the role of the guide field in relativistic magnetic reconnection in a Harris current sheet of pair (e±) plasmas, using linear theories and particle-in-cell (PIC) simulations. Two-dimensional PIC simulations exhibit the guide field dependence to the linear instabilities; the tearing or reconnection modes are relatively insensitive, while the relativistic drift-kink instability (RDKI), the fastest mode in a relativistic current sheet, is stabilized by the guide field. Particle acceleration in the nonlinear stage is also investigated. A three-dimensional PIC simulation demonstrates that the current sheet is unstable to the RDKI, although a small reconnection occurs in the deformed current sheet. Another three-dimensional PIC simulation with a guide field demonstrates a completely different scenario. Secondary magnetic reconnection is triggered by nonlinear coupling of oblique instabilities, which we call the relativistic drift-sausage tearing instability. Therefore, particle acceleration by relativistic guide field reconnection occurs in three-dimensional configuration. Based on the plasma theories, we discuss an important role of the guide field: to enable nonthermal particle acceleration by magnetic reconnection.
机译:我们使用线性理论和单元内粒子(PIC)模拟研究了哈里斯电流对(e±)等离子体在哈里斯电流片中相对论性磁重连中的引导场作用。二维PIC仿真显示了导向场对线性不稳定性的依赖性;撕裂或重新连接模式相对不敏感,而相对论漂移扭结不稳定性(RDKI)是相对论电流表中最快的模式,通过引导场得以稳定。还研究了非线性阶段的粒子加速度。三维PIC仿真显示,尽管变形的电流表中发生了很小的重新连接,但电流表对RDKI不稳定。另一个带有指导字段的三维PIC仿真演示了完全不同的情况。二次磁重连是由倾斜不稳定性的非线性耦合触发的,我们称其为相对论漂移香肠撕裂不稳定性。因此,相对论引导场重新连接引起的粒子加速在三维结构中发生。基于等离子理论,我们讨论了导向领域的重要作用:通过磁重联实现非热粒子加速。

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