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Investigation of EMIC wave scattering as the cause for the BARREL 17 January 2013 relativistic electron precipitation event: A quantitative comparison of simulation with observations

机译:EMIC波散射作为2013年1月17日的枪管原因的散射散射率相同电子降水事件:用观测的模拟定量比较

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摘要

Abstract Electromagnetic ion cyclotron (EMIC) waves were observed at multiple observatory locations for several hours on 17 January 2013. During the wave activity period, a duskside relativistic electron precipitation (REP) event was observed by one of the Balloon Array for Radiation belt Relativistic Electron Losses (BARREL) balloons and was magnetically mapped close to Geostationary Operational Environmental Satellite (GOES) 13. We simulate the relativistic electron pitch angle diffusion caused by gyroresonant interactions with EMIC waves using wave and particle data measured by multiple instruments on board GOES 13 and the Van Allen Probes. We show that the count rate, the energy distribution, and the time variation of the simulated precipitation all agree very well with the balloon observations, suggesting that EMIC wave scattering was likely the cause for the precipitation event. The event reported here is the first balloon REP event with closely conjugate EMIC wave observations, and our study employs the most detailed quantitative analysis on the link of EMIC waves with observed REP to date. Key PointsQuantitative analysis of the first balloon REP with closely conjugate EMIC wavesOur simulation suggests EMIC waves to be a viable cause for the REP eventThe adopted model is proved to be applicable to simulating the REP event.
机译:摘要在2013年1月17日在多个天文台位置观察到电磁离子回旋/(EMIC)波浪。在波活性期间,通过一个气球阵列的辐射带相对主义电子的气球阵列观察到昏昏欲不染的电子沉淀(REP)事件损失(桶)气球和磁性映射靠近地球静止操作环境卫星(GUES)13。我们模拟了通过使用船上多个仪器测量的波和粒子数据的热势与EMIC波的相互作用引起的相对论电子桨距角扩散。范艾伦探针。我们表明,模拟降水的计数率,能量分布和时间变化都与气球观察相似,表明EMIC波散射可能是降水事件的原因。这里报告的事件是第一个具有密切联合EMIC波观测的第一个气球代表事件,我们的研究采用了对观察到的代表迄今为止的EMIC波的链接最详细的定量分析。第一个气球代表的关键要素分析与紧密共轭EMIC波浪模拟表明,EMIC波是REP事件的可行原因所采用的模型被证明适用于模拟REP事件。

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