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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Geomagnetic storms driven by ICME- and CIR-dominated solar wind
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Geomagnetic storms driven by ICME- and CIR-dominated solar wind

机译:由ICME——和地磁风暴CIR-dominated太阳风

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The interaction of the solar wind and the Earth's magnetosphere is complex and the phenomenology of the interaction is very different for solar wind dominated by interplanetary coronal mass ejections (ICMEs) compared to solar wind dominated by corotating interaction regions (CIRs). We perform a superposed epoch study of the effects of ICME- and CIR-dominated solar wind upon the storm-time plasma at geosynchronous orbit using data from the magnetospheric plasma analyzer (MPA) instruments on board seven Los Alamos National Laboratory (LANL) satellites. Using 78 ICME events and 32 CIR events, we examine the electron and ion plasma sheets that are formed during each type of solar wind driver, at energy-per-charge between ~0.1 and 45 keV/q. The results demonstrate that CIR events produce a more significant modulation in the plasma sheet temperature than ICME events, whilst ICME events produce a more significant modulation in the plasma sheet density than CIR events. We attribute these differences to the average speed in the solar wind and a combination of the density of the solar wind and the ionospheric component of the plasma sheet, respectively. We also show that for CIR events, the magnitude of the spacecraft potential is, on average, significantly greater than during ICME-events, with consequent effects upon the performance of instrumentation within this environment.
机译:太阳风和地球之间的相互作用磁气圈是复杂的现象学太阳风的交互非常不同由星际日冕物质抛射(icm)太阳风相比由共转交互区域(cir)。ICME——CIR-dominated太阳风的影响在同步在storm-time等离子体使用数据从磁性层的等离子体轨道分析仪(MPA)仪器上七洛杉矶洛斯阿拉莫斯国家实验室(LANL)卫星。使用78 ICME事件和32 CIR事件,我们检查电子和离子等离子体表形成太阳风在每种类型的司机,~ 0.1之间energy-per-charge 45 keV / q。结果表明,CIR事件产生在等离子体单更重要的调制温度比ICME事件,而ICME事件产生一个更重要的调制等离子体密度板比圆形的事件。这些差异归因于平均速度太阳风的组合太阳风的密度和电离层等离子体片的组件,分别。还表明,对于新闻事件,的大小宇宙飞船的潜能是平均明显大于ICME-events期间,顺向性能的影响仪表在这个环境。

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