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Radiation belt electron acceleration by chorus waves during the 17 March 2013 storm

机译:2013年3月17日风暴期间合唱波的辐射带电子加速

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摘要

AbstractLocal acceleration driven by whistler-mode chorus waves is fundamentally important for accelerating seed electron populations to highly relativistic energies in the outer radiation belt. In this study, we quantitatively evaluate chorus-driven electron acceleration during the 17 March 2013 storm, when the Van Allen Probes observed very rapid electron acceleration up to several MeV within ~12 hours. A clear radial peak in electron phase space density (PSD) observed near L* ~4 indicates that an internal local acceleration process was operating. We construct the global distribution of chorus wave intensity from the low-altitude electron measurements made by multiple Polar Orbiting Environmental Satellites (POES) satellites over a broad region, which is ultimately used to simulate the radiation belt electron dynamics driven by chorus waves. Our simulation results show remarkable agreement in magnitude, timing, energy dependence, and pitch angle distribution with the observed electron PSD near its peak location. However, radial diffusion and other loss processes may be required to explain the differences between the observation and simulation at other locations away from the PSD peak. Our simulation results, together with previous studies, suggest that local acceleration by chorus waves is a robust and ubiquitous process and plays a critical role in accelerating injected seed electrons with convective energies (~100 keV) to highly relativistic energies (several MeV).
机译:由惠斯勒模式合唱波驱动的抽象液加速度对于将种子电子群加速到外辐射带中的高度相对论能量来说是根本重要的。在这项研究中,我们在2013年3月17日风暴中定量评估了合唱驱动的电子加速度,当van allen探针观察到在〜12小时内高达几个MeV的非常快速的电子加速度时。在L *〜4附近观察到的电子相空间密度(PSD)中的透明径向峰表示内部局部加速过程正在运行。我们构建了来自多个极地轨道环境卫星(POES)卫星在广义区域上的低空电子测量的全球分布,这最终用于模拟由合唱波驱动的辐射带电子动力学。我们的仿真结果表明,幅度,时序,能量依赖性和俯仰角分布的显着协议,观察到的电子PSD在其峰值位置附近。然而,可能需要径向扩散和其他损耗过程来解释远离PSD峰值的其他位置的观察和模拟之间的差异。我们的仿真结果与以前的研究表明,合唱波的局部加速是一种强大而普遍存在的过程,在加速带有对流能量(约100keV)的注射的种子电子以高度相对论的能量(几个MEV)中起着关键作用。

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