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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >October/November 2003 interplanetary coronal mass ejections: ACE/EPAM solar energetic particle observations
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October/November 2003 interplanetary coronal mass ejections: ACE/EPAM solar energetic particle observations

机译:2003年10月/ 11月星际日冕物质抛射:ACE / EPAM太阳高能粒子观察

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摘要

In late October and early November 2003 the ACE spacecraft at 1 AU detected two shock-associated interplanetary coronal mass ejections (ICMEs). In the sheath region formed in front of both ICMEs, some of the highest speeds ever directly measured in the solar wind were observed. We analyze in detail the energetic particle signatures measured at 1 AU by the EPAM experiment on board ACE during the passage and in the vicinity of these ICMEs. Solar energetic particles (SEPs) are utilized as diagnostic tracers of the large-scale structure and topology of the interplanetary magnetic field (IMF) embedded within both ICME events. In order to explain the bidirectional particle flows observed within both ICMEs, we have examined two candidate scenarios for these ICMEs in terms of open and closed magnetic field configurations. In the context of an open field configuration, the enhanced magnetic field regions associated with the CME-driven shocks mirror the energetic particles and hence the observed bidirectional flows. In the context of a closed field configuration, bidirectional flows result from particle circulation and reflection in a looped field configuration. Furthermore, we use the ACE/EPAM observations to reassess the leading and trailing boundaries of the ICMEs with respect to those previously proposed based upon ACE/SWEPAM solar wind plasma, suprathermal electron measurements, and ACE/MAG magnetic field data.
机译:2003年10月下旬和11月初的王牌飞船1两shock-associated盟检测星际日冕物质抛射(icm)。前面的鞘区域形成两个icm,最高的速度直接测量在太阳风。详细测量高能粒子签名1 AU EPAM实验机上的王牌在通道和附近的这些icm。利用大规模的诊断示踪剂结构和拓扑的星际ICME磁场(IMF)嵌入事件。粒子流动观测到在两个icm,我们对这些有检查两个候选人的场景吗icm的开启和关闭磁场配置。配置,增强磁场相关地区CME-driven冲击镜子的高能粒子,因此观察到的双向流动。闭域配置,双向流动由于粒子循环和反思在循环领域配置。使用ACE / EPAM观察重新评估前导和尾随icm的边界尊重那些先前提出的基于suprathermal ACE / SWEPAM太阳风等离子体电子测量和ACE / MAG磁场数据。

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