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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Magnetic Field Annihilation in a Magnetotail Electron Diffusion Region With Electron-Scale Magnetic Island
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Magnetic Field Annihilation in a Magnetotail Electron Diffusion Region With Electron-Scale Magnetic Island

机译:Magnetic Field Annihilation in a Magnetotail Electron Diffusion Region With Electron-Scale Magnetic Island

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摘要

We present observations in Earth's magnetotail by the Magnetospheric Multiscale spacecraft that are consistent with magnetic field annihilation, rather than magnetic topology change, causing fast magnetic-toelectron energy conversion in an electron-scale current sheet. Multi-spacecraft analysis for the magnetic field reconstruction shows that an electron-scale magnetic island was embedded in the observed electron diffusion region (EDR), suggesting an elongated shape of the EDR. Evidence for the annihilation was revealed in the form of the island growing at a rate much lower than expected for the standard X-type geometry of the EDR, which indicates that magnetic flux injected into the EDR was not ejected from the X-point or accumulated in the island, but was dissipated in the EDR. This energy conversion process is in contrast to that in the standard EDR of a reconnecting current sheet where the energy of antiparallel magnetic fields is mostly converted to electron bulk-flow energy. Fully kinetic simulation also demonstrates that an elongated EDR is subject to the formation of electron-scale magnetic islands in which fast but transient annihilation can occur. Consistent with the observations and simulation, theoretical analysis shows that fast magnetic diffusion can occur in an elongated EDR in the presence of nongyrotropic electron effects. We suggest that the annihilation in elongated EDRs may contribute to the dissipation of magnetic energy in a turbulent collisionless plasma.
机译:我们现在观察地球磁尾的磁性层的多尺度的宇宙飞船符合磁场湮没,而不是磁场拓扑结构改变,导致在一个快速magnetic-toelectron能量转换electron-scale当前表。分析磁场重建显示一个electron-scale磁岛嵌入在观察到的电子扩散区域(EDR),这表明一个细长的形状功能。披露的形式增长速度比预期低得多的标准交叉形几何的功能,这说明磁通注入功能没有逐出x点或累积岛,但功能消失了。能量转换过程是相反的标准功能的重新连接电流表,反平行的磁性的能量领域主要是转化为电子整体流能量。表明一个细长的功能electron-scale磁岛的形成快但短暂的毁灭发生。模拟,理论分析表明,快磁扩散可以发生在一个细长的功能在nongyrotropic电子效果。细长EDRs可能导致耗散无碰撞的磁能的动荡等离子体。

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