...
首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Magnetic coupling of the ring current and the radiation belt
【24h】

Magnetic coupling of the ring current and the radiation belt

机译:环电流和磁耦合辐射带

获取原文
获取原文并翻译 | 示例
           

摘要

The magnetic influence of the storm time ring current on high-energy particles is demonstrated by using a simulation of the ring current incorporating self-consistent magnetic and electric fields. Observations by the Polar satellite show that the magnetic field is occasionally depressed by 50% or more near the equatorial plane at <6 R E . We call them equatorially magnetic depression events (EMDEs) and focus on the most intense EMDE observed during an intense storm on 22 October 1999. The simulation predicts that under a strong convection electric field, the magnetic field strength is highly depressed around L = 5 by newly injected ions of energy 80 keV or less. The depressed magnetic field causes a significant adiabatic decrease in the high-energy ion flux at pitch angles near 90° to conserve the first adiabatic invariant. A more tail-like (shortened) magnetic field line causes an enhancement of the flux at pitch angles near 0° and 180° to conserve the second adiabatic invariant. Consequently, a butterfly-like pitch angle distribution (PAD) is formed, which agrees with the Polar observation. We propose that the adiabatic process could have acted not only on the high-energy component of the protons but also on relativistic electrons in the outer radiation belt. This notion is supported by simultaneous Polar observation of relativistic electron fluxes that show a decrease at pitch angles near 90° and a slight increase at pitch angles near 0° and 180°. PADs of protons and electrons can be used to distinguish nonadiabatic processes acting selectively on electrons from adiabatic ones.
机译:风暴的磁性影响环当前在高能粒子通过使用一个模拟环电流合并有磁场和电场。卫星显示,磁场偶尔抑郁附近的50%或更多赤道平面在< 6 R E。赤道磁萧条事件(emd)并专注于最激烈EMDE观察1999年10月22日在一次强烈的风暴。模拟预测,下一个强大对流电场、磁场力量是非常沮丧在L = 5新注入离子的能量80 keV或更少。抑郁的磁场一个重要原因绝热高能离子通量下降保护第一个螺距角度90°附近绝热不变量。磁场线引起的增强通量在0°、180°附近的俯仰角度保护第二个绝热不变量。蝴蝶节距角分布(PAD)形成,同意极地观察。我们建议的绝热过程不仅表现在高能的组成部分质子也在相对论性电子外辐射带。同时支持的极地的观察相对论性电子通量减少附近的俯仰角度90°,略有增加0°、180°附近螺距角。可以用来区分和电子选择性地作用在非绝热的过程电子从绝热的。

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