...
首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >A new perspective on the role of the solar wind dynamic pressure in the ring current particle loss through the magnetopause
【24h】

A new perspective on the role of the solar wind dynamic pressure in the ring current particle loss through the magnetopause

机译:提供一个新的视角太阳风的作用当前粒子动态压力环通过磁损耗

获取原文
获取原文并翻译 | 示例
           

摘要

It has been known that (untrapped) ring current particles can be lost through the dayside magnetopause into the magnetosheath, which is regarded as one of the major mechanisms contributing to the ring current decay. In this paper, we suggest that the solar wind dynamic pressure can play a significant role in the dayside loss in a new aspect. In order to show that, we have first analyzed the average characteristics of the dynamic pressure based on 95 geomagnetic storm events selected from the period 1997–2002. We find that the dynamic pressure overall enhances during the magnetic storm. The enhancement is most significant during the storm main phase compared to the prestorm and recovery phases, and it is higher for stronger storms. Using one of the most recent Tsyganenko models, T01s, we show that this enhanced dynamic pressure that pushes the magnetopause to move inward leads to a reduction of the scale length of the gradient of the magnetic field magnitude along the magnetopause. This results in the enhancement of the magnetic drift speed across the magnetopause. On the basis of the test particle orbit calculation, we explicitly show that this effect can be a significant factor for the particles to effectively cross the magnetopause. It applies to the adiabatic particles that have a relatively “small” gyroradius near the magnetopause compared to the magnetopause thickness. These particles cross the magnetopause by some number of the magnetic gradient drift motion, being in contrast to the particles with a relatively “large” gyroradius that can enter into the magnetosheath by crossing the magnetopause with less than one gyromotion. We argue that this can often apply to a substantial population of the ring current particles.
机译:我们已经了解到,(未捕获)环电流通过的光面粒子可能会丢失磁磁鞘中,认为的一个主要机制导致环电流衰减。纸,我们建议太阳风动态压力可以发挥重要作用在一个新的方面的光面损失。,我们首先分析了平均水平基于特征的动态压力95年地磁风暴事件的选择1997 - 2002年期间。在磁压力整体提高风暴。暴风雨prestorm相比,主要阶段复苏阶段,更高,更强风暴。t01模型,我们表明,该增强的动态压力推动磁层向内导致减少的长度梯度磁场的大小在磁层。提高磁漂移速度磁层。粒子轨道计算,我们明确地显示这种效应可以为一个重要因素粒子有效地穿过磁层。粒子有一个相对“小”回转半径相比磁层附近磁层厚度。磁磁的一个数梯度漂移运动,形成鲜明对比粒子相对回转半径大这可以通过穿越进入磁鞘不到一gyromotion磁层。我们经常认为这可以适用于一个大量人口的环电流粒子。

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