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Statistical analysis of MMS observations of energetic electron escape observed at/beyond the dayside magnetopause

机译:MMS的观察的统计分析高能电子逃逸观察到/超出了的光面的磁

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摘要

Observations from the Energetic Particle Detector (EPD) instrument suite aboard the Magnetospheric Multiscale (MMS) spacecraft show that energetic (greater than tens of keV) magnetospheric particle escape into the magnetosheath occurs commonly across the dayside. This includes the surprisingly frequent observation of magnetospheric electrons in the duskside magnetosheath, an unexpected result given assumptions regarding magnetic drift shadowing. The 238 events identified in the 40 keV electron energy channel during the first MMS dayside season that exhibit strongly anisotropic pitch angle distributions indicating monohemispheric field-aligned streaming away from the magnetopause. A review of the extremely rich literature of energetic electron observations beyond the magnetopause is provided to place these new observations into historical context. Despite the extensive history of such research, these new observations provide a more comprehensive data set that includes unprecedented magnetic local time (MLT) coverage of the dayside equatorial magnetopause/magnetosheath. These data clearly highlight the common escape of energetic electrons along magnetic field lines concluded to have been reconnected across the magnetopause. While these streaming escape events agree with prior studies which show strong correlation with geomagnetic activity (suggesting a magnetotail source) and occur most frequently during periods of southward IMF, the high number of duskside events is unexpected and previously unobserved. Although the lowest electron energy channel was the focus of this study, the events reported here exhibit pitch angle anisotropies indicative of streaming up to 200 keV, which could represent the magnetopause loss of >1 MeV electrons from the outer radiation belt.
机译:高能粒子探测器的观测(环保署)套件在磁性层的工具多尺度(MMS)航天器表明,精力充沛(大于数万keV)磁性层的粒子逃入磁鞘发生一般的光面。令人惊讶的是频繁的观察duskside磁性层的电子磁鞘,一个意想不到的结果假设关于磁漂移跟踪。238年40 keV事件识别电子能源通道在第一次MMS的光面赛季表现出强烈的各向异性角分布表明monohemisphericfield-aligned流离开磁层。文学高能电子的观察除了提供的磁层这些新的观测到历史背景。尽管大量的这类研究的历史,这些新的观测提供了更多全面的数据集,包括当地时间前所未有的磁性(MLT)报道的光面的赤道磁层/磁鞘。突出的共同逃跑精力充沛电子沿着磁力线的结论在磁层已经重新连接。虽然这些流同意逃跑事件之前的研究显示强烈的相关性地磁活动(暗示磁尾源)和发生最频繁的时期国际货币基金组织(IMF)向南,高duskside的数量事件是意外,之前没注意到。虽然电子能量最低的通道本研究的重点,这里的事件报告展览螺距角各向异性的流200 keV,这可能代表> 1兆电子伏电子的磁损耗外辐射带。

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