首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Dipolarization fronts as earthward propagating flux ropes: A three-dimensional global hybrid simulation
【24h】

Dipolarization fronts as earthward propagating flux ropes: A three-dimensional global hybrid simulation

机译:Dipolarization方面向地面的传播通量绳:三维全球混合动力车模拟

获取原文
获取原文并翻译 | 示例
           

摘要

Dipolarization fronts (DFs) as earthward propagating flux ropes (FRs) in the Earth's magnetotail are presented and investigated with a three-dimensional (3-D) global hybrid simulation for the first time. In the simulation, several small-scale earthward propagating FRs are found to be formed by multiple X line reconnection in the near tail. During their earthward propagation, the magnetic field Bz of the FRs becomes highly asymmetric due to the imbalance of the reconnection rates between the multiple X lines. At the later stage, when the FRs approach the near-Earth dipole-like region, the antireconnection between the southward/negative Bz of the FRs and the northward geomagnetic field leads to the erosion of the southward magnetic flux of the FRs, which further aggravates the Bz asymmetry. Eventually, the FRs merge into the near-Earth region through the antireconnection. These earthward propagating FRs can fully reproduce the observational features of the DFs, e.g., a sharp enhancement of Bz preceded by a smaller amplitude Bz dip, an earthward flow enhancement, the presence of the electric field components in the normal and dawn-dusk directions, and ion energization. Our results show that the earthward propagating FRs can be used to explain the DFs observed in the magnetotail. The thickness of the DFs is on the order of several ion inertial lengths, and the electric field normal to the front is found to be dominated by the Hall physics. During the earthward propagation from the near-tail to the near-Earth region, the speed of the FR/DFs increases from~150km/s to ~1000 km/s. The FR/DFs can be tilted in the GSM (x, y) plane with respect to the y (dawn-dusk) axis and only extend several Earth radii in this direction. Moreover, the structure and evolution of the FRs/DFs are nonuniform in the dawn-dusk direction, which indicates that the DFs are essentially 3-D.
机译:Dipolarization方面(DFs)向地面传播通量绳(FRs)在地球的介绍了磁尾和调查全球混合模拟三维(3 d)第一次。小规模向地面传播FRs被发现是由多个X线重新连接不久的尾巴。传播,磁场Bz FRs变得高度不对称的不平衡重联率之间的多重X行。近地dipole-like地区antireconnection向南之间的/消极Bz FRs和北地磁场导致向南磁的侵蚀通量的FRs,进一步加剧不对称。通过antireconnection近地区域。这些向地面传播FRs完全可以DFs的再现观测特征,例如,Bz之前大幅增强小振幅Bz倾斜,向地面的流增强,电场的存在组件在正常和dawn-dusk方向,而离子激发。表明,向地面传播FRs用来解释的DFs观察磁尾。订单的几个离子惯性长度,电场正常前被发现物理学由大厅。向地球从near-tail传播近地区域,FR / DFs的速度增加从~ 150 km / s ~ 1000 km / s。可以在GSM (x, y)平面倾斜对y (dawn-dusk)只轴和扩展在这个方向的几个地球半径。FRs / DFs的结构和演化非均匀dawn-dusk方向,表明,DFs基本上是三维的。

著录项

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