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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Transport and Loss of Ring Current Electrons Inside Geosynchronous Orbit During the 17 March 2013 Storm
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Transport and Loss of Ring Current Electrons Inside Geosynchronous Orbit During the 17 March 2013 Storm

机译:环电流的电子传输和损失在3月17日在地球同步轨道2013年风暴

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摘要

Ring current electrons (1-100 keV) have received significant attention in recent decades, but many questions regarding their major transport and loss mechanisms remain open. In this study, we use the four-dimensional Versatile Electron Radiation Belt code to model the enhancement of phase space density that occurred during the 17 March 2013 storm. Our model includes global convection, radial diffusion, and scattering into the Earth's atmosphere driven by whistler-mode hiss and chorus waves. We study the sensitivity of the model to the boundary conditions, global electric field, the electric field associated with subauroral polarization streams, electron loss rates, and radial diffusion coefficients. The results of the code are almost insensitive to the model parameters above 4.5 R_ER_E, which indicates that the general dynamics of the electrons between 4.5 R_E and the geostationary orbit can be explained by global convection.We found that the major discrepancies between the model and data can stem from the inaccurate electric field model and uncertainties in lifetimes. We show that additional mechanisms that are responsible for radial transport are required to explain the dynamics of ≥40-keV electrons, and the inclusion of the radial diffusion rates that are typically assumed in radiation belt studies leads to a better agreement with the data. The overall effect of subauroral polarization streams on the electron phase space density profiles seems to be smaller than the uncertainties in other input parameters. This study is an initial step toward understanding the dynamics of these particles inside the geostationary orbit.
机译:环电流电子(1 - 100 keV)已收到重要关注在最近几十年,但许多关于他们的主要运输和问题损失机制保持开放。使用四维的电子辐射带增强代码模型在17日发生的相空间密度2013年3月风暴。对流、径向扩散和散射地球的大气层由whistler-mode驱动的嘶嘶声和合唱。模型的边界条件,全球电场,电场有关与subauroral极化流,电子损失率,径向扩散系数。代码几乎是麻木不仁的结果上面的模型参数4.5 R_ER_E,表明的通用动力公司4.5 R_E和电子之间同步轨道可以解释为全球对流。发现之间的主要差异模型和数据可以来源于不准确电场模型和不确定性寿命。负责径向运输需要解释的动力学≥40-keV电子,径向的包容通常认为的扩散率辐射带的研究导致一个更好的协议与数据。subauroral电子极化流相空间密度资料似乎更小比在其他输入参数的不确定性。本研究是一个最初的一步理解这些粒子的动力学在地球静止轨道。

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