首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Examination of Radiation Belt Dynamics During Substorm Clusters: Activity Drivers and Dependencies of Trapped Flux Enhancements
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Examination of Radiation Belt Dynamics During Substorm Clusters: Activity Drivers and Dependencies of Trapped Flux Enhancements

机译:考试期间辐射带的动力学亚暴集群:司机和活动依赖性的困通量增强

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摘要

Dynamical variations of radiation belt trapped electron fluxes are examined to better understand the variability of enhancements linked to substorm clusters. Analysis is undertaken using the Substorm Onsets and Phases from Indices of the Electrojet substorm cluster algorithm for event detection. Observations from low earth orbit are complemented by additional measurements from medium earth orbit to allow a major expansion in the energy range considered, from medium energy energetic electrons up to ultra-relativistic electrons. The number of substorms identified inside a cluster does not depend strongly on solar wind drivers or geomagnetic indices either before, during, or after the cluster start time. Clusters of substorms linked to moderate (100 nT < AE ≤ 300 nT) or strong AE (AE ≥ 300 nT) disturbances are associated with radiation belt flux enhancements, including up to ultra-relativistic energies by the strongest substorms (as measured by strong southward B_z and high AE). These clusters reliably occur during times of high speed solar winds streams with associated increased magnetospheric convection. However, substorm clusters associated with quiet AE disturbances (AE ≤ 100 nT) lead to no significant chorus whistler mode intensity enhancements, or increases in energetic, relativistic, or ultra-relativistic electron flux in the outer radiation belts. In these cases the solar wind speed is low, and the geomagnetic Kp index indicates a lack of magnetospheric convection. Our study clearly indicates that clusters of substorms occurring outside of high speed wind streams are not by themselves sufficient to drive acceleration, which may be due to the lack of pre-cluster convection.
机译:辐射带困的动态变化电子通量是研究更好地理解增强相关的可变性亚暴集群。亚暴发作阶段的指标在电喷流亚暴集群算法事件检测。轨道旁边还有额外的测量从介质地球轨道允许专业扩张的能量范围,从介质能量高能电子ultra-relativistic电子。亚暴的不确定在一个集群强烈依赖于太阳风司机或地磁指数要么之前、期间或在集群启动时间。亚暴与温和(100元< AE≤300nT)或强烈的AE (AE≥300元)干扰与辐射带通量的增强有关,包括ultra-relativistic能量最强的亚暴(以强劲向南说是和高AE)。可靠地发生在高速太阳能风流和增加有关磁性层的对流。集群与安静的AE干扰有关(AE≤100元)导致没有明显的合唱惠斯勒模式强度增强,或增加精力充沛、相对论或ultra-relativistic外层电子通量辐射带。速度很低,和地磁Kp指数表明缺乏磁性层的对流。我们的研究清楚地表明,集群的高速风以外的亚暴的发生流本身并不是足够的开车加速度,这可能是由于缺乏pre-cluster对流。

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