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Phase Space Density Analysis of Outer Radiation Belt Electron Energization and Loss During Geoeffective and Nongeoeffective Sheath Regions

机译:外辐射的相空间密度分析带电子激发和损失Geoeffective和Nongeoeffective鞘区域

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摘要

Coronal mass ejection driven sheath regions are one of the key drivers of drastic outer radiation belt responses. The response can however be significantly different based on the sheath properties and the associated inner magnetospheric wave activity. We performed two case studies on the effects of sheaths on outer belt electrons of various energies using data from the Van Allen Probes. One sheath caused a major geomagnetic disturbance and the other had only a minor impact. We especially investigated the phase space density (PSD) of seed, core, and ultrarelativistic electrons to determine the dominant energization and loss processes taking place during the events. Both sheaths produced substantial variation in the electron fluxes from tens of kiloelectronvolts up to ultrarelativistic energies. The responses were however the opposite: the geoeffective sheath mainly led to enhancement, while the nongeoeffective one caused a depletion throughout most of the outer belt. The case studies highlight that both inward and outward radial transport driven by ultralow frequency waves played an important role in both electron energization and loss. Additionally, PSD radial profiles revealed a local peak that indicated significant acceleration to core energies by chorus waves during the geoeffective event. The distinct responses and different mechanisms in action during these events were related to the timing of the peaked solar wind dynamic pressure causing magnetopause compression, and the differing levels of substorm activity. The most remarkable changes in the radiation belt system occurred in key sheath sub-regions near the shock and the ejecta leading edge.
机译:日冕物质抛射鞘区域激烈的外部辐射的关键因素之一带响应。基于鞘明显不同和相关的内在属性磁性层的波活动。案例研究的影响外鞘带电子的各种能量使用数据范艾伦辐射探测器。大地磁扰动和其他只有轻微的影响。相空间密度(PSD)的种子,核心,ultrarelativistic电子来确定占主导地位的通电和损失处理在事件的地方。大量电子通量的变化数万kiloelectronvolts ultrarelativistic的能量。相反:geoeffective鞘主要导致增强,而nongeoeffective引起损耗在最外围的腰带。这些案例研究强调内在的和径向向外运输由超低电波在这两方面都发挥了重要作用电子激发和损失。径向剖面显示当地的高峰表示显著加速核心在geoeffective能量通过合唱电波事件。在这些事件机制的行动与太阳风达到峰值的时间有关动态压力导致磁压缩和不同水平的亚暴活动。辐射带系统发生在关键的鞘次区域附近的震惊和喷出物领先边缘。

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