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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Cross-scale observations of the 2015 St. Patrick’s day storm: THEMIS, Van Allen Probes, and TWINS
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Cross-scale observations of the 2015 St. Patrick’s day storm: THEMIS, Van Allen Probes, and TWINS

机译:Cross-scale 2015圣帕特里克的观察暴风雨天:THEMIS范艾伦辐射探测器,双胞胎

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We present cross-scale magnetospheric observations of the 17 March 2015 (St. Patrick’s Day) storm, by Time History of Events and Macroscale Interactions during Substorms (THEMIS), Van Allen Probes (Radiation Belt Storm Probes), and Two Wide-angle Imaging Neutral-atom Spectrometers (TWINS), plus upstream ACE/Wind solar wind data. THEMIS crossed the bow shock or magnetopause 22 times and observed the magnetospheric compression that initiated the storm. Empirical models reproduce these boundary locations within 0.7 RE. Van Allen Probes crossed the plasmapause 13 times; test particle simulations reproduce these encounters within 0.5 RE. Before the storm, Van Allen Probes measured quiet double-nose proton spectra in the region of corotating cold plasma. About 15 min after a 0605 UT dayside southward turning, Van Allen Probes captured the onset of inner magnetospheric convection, as a density decrease at the moving corotation-convection boundary (CCB) and a steep increase in ring current (RC) proton flux. During the first several hours of the storm, Van Allen Probes measured highly dynamic ion signatures (numerous injections and multiple spectral peaks). Sustained convection after ~1200 UT initiated a major buildup of the midnight-sector ring current (measured by RBSP A), with much weaker duskside fluxes (measured by RBSP B, THEMIS a and THEMIS d). A close conjunction of THEMIS d, RBSP A, and TWINS 1 at 1631 UT shows good three-way agreement in the shapes of two-peak spectra from the center of the partial RC. A midstorm injection, observed by Van Allen Probes and TWINS at 1740 UT, brought in fresh ions with lower average energies (leading to globally less energetic spectra in precipitating ions) but increased the total pressure. The cross-scale measurements of 17 March 2015 contain significant spatial, spectral, and temporal structure.
机译:上我们提出跨磁性层的观察2015年3月17日(圣帕特里克节)风暴,时间的历史事件和宏观尺度相互作用,在亚暴(裁判),范-艾伦探针(辐射带风暴探测),两个广角成像中性原子光谱仪(双胞胎),加上上游ACE /风太阳风数据。忒弥斯穿过弓形激波或磁层22次,观察磁性层的压缩发起的风暴。在0.7重新复制这些边界位置。范艾伦辐射探测器穿过等离子体层顶13次;遇到在0.5再保险。暴风雨前,范艾伦double-nose质子探针测量了安静等离子体光谱区域的共转冷。大约15分钟后向南0605 UT的光面车削、范艾伦辐射探测器捕获的发作内部磁性层的对流,密度减少在corotation-convection移动边界(建行)和环的急剧增加电流(RC)质子通量。几个小时的风暴,范艾伦辐射探测器测量高度动态离子签名(无数注射和多个光谱峰值)。~ 1200 UT发起后持续对流主要建设midnight-sector环电流(以RBSP), duskside弱得多通量(衡量RBSP B,忒弥斯和忒弥斯d)。忒弥斯的亲密结合d, RBSP A和双胞胎在1631 UT显示良好的三方协议从中心two-peak光谱的形状的部分钢筋混凝土。范艾伦辐射探测器和双胞胎1740 UT新鲜离子较低的平均能量(少导致全球能量谱沉淀离子),但增加了压力。2015年3月包含重要的空间、光谱和时间结构。

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