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首页> 外文期刊>Bulletin of the American Physical Society >APS -84th Annual Meeting of the APS Southeastern Section - Event - The role of the dynamic plasmapause in outer radiation belt electron flux enhancement and three-belt structure formation
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APS -84th Annual Meeting of the APS Southeastern Section - Event - The role of the dynamic plasmapause in outer radiation belt electron flux enhancement and three-belt structure formation

机译:APS -84TH APS东南部分的年会 - 事件 - 动态差距中的作用 - 外辐射带电子磁通增强和三带结构形成

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摘要

Plasma waves inside and outside the Earth's plasmasphere can lead to loss or acceleration of high energy outer radiation belt electrons. Early studies found an apparent correlation on long time scales between the observed inner edge of the outer radiation belt and the simulated innermost plasmapause location. Recent work using high resolution satellite data has revealed a more complex relationship. The aim of this project was to provide a systematic study of the dynamics of the plasmapause compared to the outer belt MeV electrons. We used REPT electron flux and EFW derived density data from the Van Allen Probes. We found that the location of peak flux was consistently outside the innermost location of the plasmapause at enhancement times, with an average standoff distance $Delta $L$=$1.0 $+$/- 0.5. This is consistent with current chorus enhancement models and previous chorus wave observations. We also identified ``three-belt'' structure events where a second outer belt formed. We found a repeated pattern of plasmapause dynamics associated with specific changes in electron flux required to generate and sustain these structures. This study is significant toward understanding how the plasmasphere under differing conditions can shield Earth from or worsen the impacts of geomagnetic activity.
机译:地球上部和外部的等离子波可以导致高能外辐射带电子的损失或加速度。早期研究发现,在外辐射带的观察到的内边缘和模拟最内部的离子截图位置之间的长时间尺度的表观相关性。最近使用高分辨率卫星数据的工作揭示了更复杂的关系。该项目的目的是提供与外带MEV电子相比的近视性动态的系统研究。我们使用VAN ALLEN探针的REPT电子通量和EFW导出的密度数据。我们发现峰值通量的位置一致地在增强时间最内在的峰值位置之外,平均支出距离$ L $ = $ 1.0 $ + $ / - 0.5。这与当前的合唱增强模型和先前的合唱波观察结果一致。我们还确定了形成的第二外带的“三带”结构事件。我们发现与产生和维持这些结构所需的电子通量的特定变化相关的额外的降压动态模式。本研究对于了解不同条件下的血浆可以保护地球或恶化地磁活动的影响的重要意义。

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