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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Comparison of Electron Loss Models in the Inner Magnetosphere During the 2013 St. Patrick's Day Geomagnetic Storm
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Comparison of Electron Loss Models in the Inner Magnetosphere During the 2013 St. Patrick's Day Geomagnetic Storm

机译:比较电子损失模型的内部磁气圈在2013年的圣派翠克节磁暴

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摘要

Electrons with energies in the keV range play an important role in the dynamics of the inner magnetosphere. Therefore, accurately modeling electron fluxes in this region is of great interest. However, these calculations constitute a challenging task since the lifetimes of electrons that are available have limitations. In this study, we simulate electron fluxes in the energy range of 20 eV to 100 keV to assess how well different electron loss models can account for the observed electron fluxes during the Geospace Environment Modelling Challenge Event of the 2013 St. Patrick's Day storm. Three models (Case 1, Case 2, and Case 3) of electron lifetimes due to wave-induced pitch angle scattering are used to compute the fluxes, which are compared with measurements from the Van Allen Probes. The three models consider electron losses due to interactions with whistler mode hiss waves inside the plasmasphere and with whistler mode chorus waves outside the plasmasphere. The Case 1 (historical) model produces excessive loss at low L shells before and after the storm, suggesting that it overestimates losses due to hiss during quiet times. During the storm main phase and early recovery all three models show good agreement with the observations, indicating that losses due to chorus during disturbed times are, in general, well accounted for by the models. Furthermore, the more recent Case 2 and Case 3 models show overall better agreement with the observed fluxes.
机译:电子keV能量的发挥重要作用的内在的动力磁气圈。电子通量在这个区域是伟大的的兴趣。一生以来的一个具有挑战性的任务可用电子有局限性。这项研究中,我们模拟的电子通量20 eV - 100 keV能量范围评估不同的电子损失模型可以解释期间观察到电子通量地球空间环境建模的挑战2013年的圣派翠克日风暴。(例1、例2和例3)的电子一生中由于海浪引发的螺旋角散射是用来计算通量,从范-艾伦与测量吗调查。由于嘘波与惠斯勒的互动模式在等离子体层和惠斯勒模式合唱波在等离子体层。(历史)模型产生过度损耗较低L暴风雨前后壳,暗示这期间高估了损失嘘安静的时间。早期恢复这三个模型显示良好协议的观察,表明损失在扰动时期合唱,总的来说,占的模型。此外,最近的例2和例3模型显示整体更好的协议观察到的通量。

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