...
首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >The double-belt outer radiation belt during CME- and CIR-driven geomagnetic storms
【24h】

The double-belt outer radiation belt during CME- and CIR-driven geomagnetic storms

机译:CME和CIR驱动的地磁暴期间的双带外辐射带

获取原文
获取原文并翻译 | 示例
           

摘要

[1] We have identified eight events with double-belt structure in the outer radiation belt from 110 coronal mass ejection (CME) driven magnetic storms and 223 corotating interaction regions (CIR) driven storms during 1994 to 2003 based on the SAMPEX data sets. Among them, three cases are related to CME-driven magnetic storms and five cases are related CIR-driven storms. All double-belt structure events in the outer radiation belt are found during the recovery phase of a magnetic storm for both CME- and CIR-related events-they usually start to form within 3–4 days after the onset of the magnetic storm. The preconditions needed to form a double-belt structure, for all the CME-related events, are found to be high solar wind dynamic pressure (P_(dy)) and southward interplanetary magnetic field B_z; nevertheless, for the CIR-related events, they are found to be associated with high-speed stream with southward interplanetary magnetic field, which is enhanced by a suitably orientated B_y component.It is further found that the flux distributions of the double-belt structure can be fitted well with a simply exponential decay function of L~*. Based on the radiation belt content index, the proportion of the total number of 1.5–6.0 MeV electrons inside the position of maximum fluxes to that outside the maximum fluxes keeps rising during the double-belt period, which implies that the acceleration mainly occurs at regions inside the location of maximum fluxes. We suggest that the plasmapause and the strong wave-particle interactions with VLF and ULF waves near it play an important role in the development of the double-belt structures.
机译:[1]根据SAMPEX数据集,我们从1994年至2003年的110次冕状物质抛射(CME)驱动的磁暴和223次同向相互作用区域(CIR)驱动的暴风雨中,确定了外辐射带中的八带构造。其中,三起与CME驱动的暴风雨有关,五起与CIR驱动的暴风雨有关。在与CME和CIR有关的事件的磁暴恢复阶段都发现了外部辐射带中的所有双带结构事件,它们通常在磁暴发生后的3-4天内开始形成。对于所有与CME有关的事件,形成双带状结构所需的前提条件是太阳风动压力高(P_(dy))和行星际磁场B_z向南。然而,对于与CIR有关的事件,发现它们与具有南向行星际磁场的高速流相关联,并通过适当地定向的B_y分量增强了该速度。进一步发现,双带结构的通量分布可以很好地拟合L〜*的简单指数衰减函数。根据辐射带含量指数,在双带期间,最大通量位置内部的1.5–6.0 MeV电子总数与最大通量位置之外的电子总数的比例不断上升,这表明加速主要发生在区域在最大通量的位置。我们建议等离子暂停以及与它附近的VLF和ULF波的强波粒子相互作用在双带结构的发展中起重要作用。

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