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Multiyear Measurements of Radiation Belt Electrons:Acceleration, Transport, and Loss

机译:多年的测量辐射带电子:加速、运输和损失

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In addition to clarifying morphological structures of the Earth's radiation belts, it has also been a major achievement of the Van Allen Probes mission to understand more thoroughly how highly relativistic and ultrarelativistic electrons are accelerated deep inside the radiation belts. Prior studies have demonstrated that electrons up to energies of 10 megaelectron volts (MeV) can be produced over broad regions of the outer Van Allen zone on timescales of minutes to a few hours. It often is seen that geomagnetic activity driven by strong solar storms (i.e., coronal mass ejections, or CMEs) almost inexorably leads to relativistic electron production through the intermediary step of intense magnetospheric substorms. In this study, we report observations over the 6-year period 1 September 2012 to 1 September 2018. We focus on data about the relativistic and ultrarelativistic electrons (E≥5 MeV) measured by the Relativistic Electron-Proton Telescope sensors on board the Van Allen Probes spacecraft. This work portrays the radiation belt acceleration, transport, and loss characteristics over a wide range of geomagnetic events. We emphasize features seen repeatedly in the data (three-belt structures, “impenetrable” barrier properties, and radial diffusion signatures) in the context of acceleration and loss mechanisms. We especially highlight solar wind forcing of the ultrarelativistic electron populations and extended periods when such electrons were absent. The analysis includes new display tools showing spatial features of the mission-long time variability of the outer Van Allen belt emphasizing the remarkable dynamics of the system.
机译:除了澄清形态结构地球辐射带的,它也范艾伦辐射探测器的主要成就任务更彻底地了解高度相对论和ultrarelativistic电子加快内部辐射带。之前的研究已经证明,电子能量的10 megaelectron伏特(兆电子伏)产生了广泛的区域外范艾伦带时标上几分钟个小时。受强烈的太阳风暴(例如,日冕物质抛射抛射或cme)几乎不可避免地导致相对论性电子产品通过强烈的磁性层的中间步骤亚暴。在六年期间2012年9月1日为12018年9月。相对论和ultrarelativistic电子(E≥5由相对论Electron-Proton兆电子伏)测量望远镜传感器范艾伦辐射探测器上宇宙飞船。加速度、运输、和损失特性在一个广泛的地磁活动。强调功能重复的数据(three-belt结构,“费解”障碍属性和径向扩散签名)加速的背景下和损失机制。我们特别强调太阳风的强迫ultrarelativistic电子人口和长时间缺席当这样的电子。分析包括新的显示工具显示使命长时间的空间特征可变性的范艾伦辐射带强调卓越的动态系统。

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