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首页> 外文期刊>Geophysical Research Letters >Prompt energization of relativistic and highly relativistic electrons during a substorm interval: Van Allen Probes observations
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Prompt energization of relativistic and highly relativistic electrons during a substorm interval: Van Allen Probes observations

机译:在亚暴期间,相对论和高度相对论的电子迅速通电:范艾伦(Van Allen)探索

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摘要

On 17 March 2013, a large magnetic storm significantly depleted the multi-MeV radiation belt. We present multi-instrument observations from the Van Allen Probes spacecraft Radiation Belt Storm Probe A and Radiation Belt Storm Probe B at ~6 Re in themidnight sector magnetosphere and from ground-based ionospheric sensors during a substormdipolarization followed by rapid reenergization of multi-MeV electrons. A 50% increase in magnetic fieldmagnitude occurred simultaneously with dramatic increases in 100 keV electron fluxes and a 100 times increase in VLF wave intensity. The 100 keV electrons and intense VLF waves provide a seed population and energy source for subsequent radiation belt enhancements. Highly relativistic (>2MeV) electron fluxes increased immediately at L~* ~ 4.5 and 4.5MeV flux increased>90 times at L~*= 4 over 5 h. Although plasmasphere expansion brings the enhanced radiation belt multi-MeV fluxes inside the plasmasphere several hours postsubstorm, we localize their prompt reenergization during the event to regions outside the plasmasphere.
机译:2013年3月17日,一场大磁暴极大地耗尽了多MeV辐射带。我们将在午夜扇形磁层中约6 Re时从Van Allen Probes航天器辐射带风暴探测器A和辐射带风暴探测器B以及地面电离层传感器提供的多仪器观测结果,进行亚风暴​​双极化,随后对多MeV电子进行快速通电。磁场强度增加了50%,同时100 keV电子通量急剧增加,而VLF波强度增加了100倍。 100 keV电子和强烈的VLF波为随后的辐射带增强提供了种子种群和能源。高相对论(> 2MeV)电子通量在L〜*〜4.5时立即增加,而4.5MeV通量在L〜* = 4时在5小时内增加> 90倍。尽管在次暴风雨后几个小时,等离子层的膨胀将增强的辐射带多MeV通量带入了等离子层内部,但我们将它们在事件发生时的迅速通电定位在等离子层以外的区域。

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