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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Electron Dynamics in Magnetosheath Mirror-Mode Structures
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Electron Dynamics in Magnetosheath Mirror-Mode Structures

机译:电子动态磁鞘镜像模式结构

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Mirror-mode structures are widely observed in space plasma environments. Although plasma features within the structures have been extensively investigated in theoretical models and numerical simulations, relatively few observational studies have been made, due to a lack of high-cadence measurements of particle distributions in previous space missions. In this work, electron dynamics associated with mirror-mode structures are studied based on Magnetospheric Multiscale observations of electron pitch angle distributions. We define mirror-mode peaks/troughs as the region where the magnetic field strength is greater/smaller than the mean field. The observations show that most electrons are trapped inside the mirror-mode troughs and display a donut-like pitch angle distribution configuration. Besides the trapped electrons in mirror-mode troughs, we find that electrons are also trapped between ambient mirror-mode peaks and coexisting untrapped electrons within the mirror-mode structure. Analysis shows that the observed donut-like electron distributions are the result of betatron cooling and the spatial dependence of electron pitch angles within the structure.
机译:镜像模式结构广泛观察到空间等离子体环境。在结构特性广泛研究的理论模型和数值模拟,相对较少观察性研究,由于缺乏high-cadence测量粒子分布在以前的太空任务。工作,电子动力学联系在一起研究了基于镜像模式结构磁性层的多尺度的观察电子螺旋角分布。镜像模式高峰和低谷的地区磁场强度大于/小于平均场。电子被困在镜像模式槽,并显示一个donut-like螺距角分布配置。电子镜像模式低谷,我们发现电子环境之间也困镜像模式高峰和共存未捕获镜像模式内的电子结构。分析表明,观察donut-like电子分布电子感应加速器的结果冷却和电子的空间相关性螺距角内的结构。

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