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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Particle-In-Cell Simulations of Electrostatic Solitary Waves in Asymmetric Magnetic R_(eco)nnection
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Particle-In-Cell Simulations of Electrostatic Solitary Waves in Asymmetric Magnetic R_(eco)nnection

机译:Particle-In-Cell模拟静电孤独的在不对称磁波R_ (eco) nnection

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摘要

Electrostatic solitary waves (ESWs) are ubiquitously observed in magnetic reconnection. In this study, two-dimensional (2-D) particle-in-cell (PIC) simulations are performed to investigate the characteristics of ESWs in asymmetric magnetic reconnection. ESWs with bipolar structures of the parallel electric field can be generated near the separatrices only on the magnetosphere side, and propagate to reconnection downstream direction along the magnetic field. These structures corresponding to electron phase-space holes (electron holes) can cross both the electron outflow and inflow channels although their main part is located in the electron outflow. When there is no guide field, the ESWs are generated by electron two-stream instability. When there is a guide field, the amplitude of the ESWs are different on the right and left side of the X line. On the left side, the ESWs are weaker and generated by the electron two-stream instability. On the right side, the ESWs are stronger, and there are two kinds of ESWs with distinct phase speed. The faster one is generated by electron two-stream instability, while the slower one is generated by Buneman instability.
机译:静电孤波(ESWs)无所不在地观察到磁重联。在这项研究中,二维(2 d)particle-in-cell (PIC)模拟执行调查ESWs的特点不对称的磁重联。双相结构的平行电场只能生成的分界线附近吗磁气圈的一面,和传播重新连接下游方向沿磁场。电子(电子空穴)可以相空间洞交叉电子流出和流入虽然他们的主要部分位于渠道电子流出。领域,ESWs产生电子二束不稳定。领域,ESWs的振幅是不同的X线的左侧和右侧。左侧,ESWs弱,产生的电子二束不稳定。方面,ESWs强,都有两个种ESWs与不同阶段的速度。更快的一个是由电子二束不稳定,而生成的一个是越慢Buneman不稳定。

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