...
首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Suprathermal Electron Acceleration in a Reconnecting Magnetotail: Large-Scale Kinetic Simulation
【24h】

Suprathermal Electron Acceleration in a Reconnecting Magnetotail: Large-Scale Kinetic Simulation

机译:Suprathermal电子加速重新连接磁尾:大规模的动能模拟

获取原文
获取原文并翻译 | 示例
           

摘要

Electron acceleration in the magnetotail has been investigated intensively. A major location for this process is the reconnection region. How electrons are accelerated to suprathermal energy in a realistic three-dimensional reconnection geometry, as opposed to an idealized configuration, is not fully understood. In this study, we employed a three-dimensional implicit particle-in-cell (iPIC3D) simulation and a large-scale kinetic simulation to address this problem. We simulated a near-Earth reconnection event observed by THEMIS spacecraft using an iPIC3D simulation with initial and boundary conditions set by a global magnetohydrodynamic simulation of Earth’s magnetosphere. The simulated near-Earth reconnection was characterized by a primary X line and a nearby ion-scale flux rope. Using large-scale kinetic, we then followed millions of test electrons using the electromagnetic fields from the iPIC3D simulation. We found that magnetotail reconnection can substantially heat the electrons and generate a large number of suprathermal electrons. The small-scale flux rope played an essential role in energizing these suprathermal electrons, which were predominantly produced inside the flux rope. We identified several acceleration mechanisms that were responsible for energizing these electrons: parallel electric fields, betatron and Fermi acceleration, and nonadiabatic acceleration by the perpendicular electric field. It is found that the parallel electric field was the dominant cause of electron acceleration to suprathermal energy. We suggest that three-dimensional and time-dependent structures must be taken into account to understand electron acceleration during magnetic reconnection.
机译:电子在磁尾加速度深入调查。这个过程是重新连接区域。电子加速到suprathermal能量在一个现实的三维重联几何,而不是一个理想化的配置,并不完全理解。研究中,我们使用一个三维隐式particle-in-cell (iPIC3D)模拟和一个大规模的动力学模拟来解决这一问题问题。使用一个事件忒弥斯观察到宇宙飞船iPIC3D模拟初始和边界全球磁流体动力条件模拟地球的磁气圈。模拟近地重新连接是主要X线和附近的一个特征ion-scale通量绳。然后我们跟着数以百万计的电子测试使用iPIC3D的电磁场模拟。重新连接可以充分加热电子并生成大量suprathermal电子。在激励这些suprathermal至关重要的作用电子,主要生产在通量绳。负责的加速机制激励这些电子:电动平行字段、电子感应加速器和费米加速和非绝热的垂直加速度电场。电场是电子的主要原因加速度suprathermal能源。三维,时间结构必须考虑理解电子在磁加速度重新连接。

著录项

相似文献

  • 外文文献
  • 中文文献
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