首页> 外文期刊>Geoscience Letters >Current structure and flow pattern on the electron separatrix in reconnection region
【24h】

Current structure and flow pattern on the electron separatrix in reconnection region

机译:重连接区电子分离层的电流结构和流动方式

获取原文
           

摘要

Abstract Results from 2.5D Particle-in-cell (PIC) simulations of symmetric reconnection with negligible guide field reveal that the accessible boundary of the electrons accelerated in the magnetic reconnection region is displayed by enhanced electron nongyrotropy downstream from the X -line. The boundary, hereafter termed the electron separatrix, occurs at a few d ~(e)(electron inertial length) away from the exhaust side of the magnetic separatrix. On the inflow side of the electron separatrix, the current is mainly carried by parallel accelerated electrons, served as the inflow region patch of the Hall current. The out-of-plane current density enhances at the electron separatrix. The dominating current carriers are the electrons, nongyrotropic distribution functions of which contribute significantly to the perpendicular electron velocity by increasing the electron diamagnetic drift velocity. When crossing the separatrix region where the Hall electric field is enhanced, electron velocity orientation is changed dramatically, which could be a diagnostic indicator to detect the electron separatrix. In the exhaust region, ions are the main carriers for the out-of-plane current, while the parallel current is still mainly carried by electrons. The current density peak in the separatrix region implies that a thin current sheet is formed apart from the neutral line, which can evolve to the bifurcated current sheet.
机译:摘要:2.5D粒子在引导场可忽略不计的对称重连中的PIC模拟结果表明,在磁重连区中加速的电子的可到达边界由X线下游增强的电子非旋向性显示。该边界在下文中称为电子隔膜,出现在距磁性隔膜的排气侧几d(e)(电子惯性长度)处。在电子分离层的流入侧,电流主要由平行的加速电子携带,用作霍尔电流的流入区域。平面外电流密度在电子分离层处增加。主要的电流载流子是电子,其非回旋分布函数通过增加电子抗磁性漂移速度而对垂直电子速度有显着贡献。当穿过霍尔电场增强的分离线区域时,电子速度方向发生了巨大变化,这可能是检测电子分离线的诊断指标。在排气区,离子是平面外电流的主要载流子,而并联电流仍主要由电子携带。分离区域中的电流密度峰值表示与中性线分开形成的薄电流板,该薄电流板可以演变为分叉的电流板。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号