首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Ion reflection and acceleration near magnetotail dipolarization fronts associated with magnetic reconnection
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Ion reflection and acceleration near magnetotail dipolarization fronts associated with magnetic reconnection

机译:磁尾附近离子反射和加速度dipolarization方面与磁场有关重新连接

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Dipolarization fronts (DFs) are often associated with the leading edge of earthward bursty bulk flows in the magnetotail plasma sheet. Here multispacecraft Time History of Events and Macroscale Interactions during Substorms (THEMIS) observations are used to show that a spatially limited region of counterpropagating ion beams, whose existence is not evident in either the plasma moments or the electric field, is observed on the low-density side of DFs. The THEMIS magnetic field data are used to establish appropriate comparison cuts through a particle-in-cell simulation of reconnection, and very good agreement is found between the observed and simulated ion distributions on both sides of the DF. Self-consistent back tracing shows that the ion beams originate from the thermal component of the preexisting high-density plasma into which the DF is propagating; they do not originate from the inflow region in the traditional sense. Forward tracing shows that some of these ions can subsequently overtake the DF and pass back into the high-density preexisting plasma sheet with an order-of-magnitude increase in energy; this process is distinct from other ion reflection processes that occur directly at the DF. The interaction of the reconnection jet with the preexisting plasma sheet therefore occurs over a macroscopic region, rather than simply being limited to the thin DF interface. A more general consequence of this study is the conclusion that reconnection jets are not simply fed by plasma inflow across the separatrices but are also fed by plasma from the region into which the jet is propagating; the implications of this finding are discussed.
机译:Dipolarization方面(DFs)往往是相关的向地面的前缘丛发性在磁尾等离子体流表。multispacecraft时间事件和历史宏观尺度相互作用在亚暴(裁判)观察是用来显示一个空间有限的区域counterpropagating离子光束,不明显的是谁的存在等离子体的时刻或电场,是观察DFs在低密度的一面。数据被用来建立磁场适当的比较穿过particle-in-cell模拟重新连接很好的观察之间的协议是发现和模拟离子分布的两边DF。离子光束来源于热组件的既存的高密度等离子体DF的传播;来源于流入地区传统意义上。一些离子可以随后赶上DF并传递回高密度现有等离子体与一个表数量级的增加能量;从其他离子反射过程是截然不同的直接在DF过程发生。交互的重新连接飞机现有等离子体片因此发生了宏观区域,而不是简单的局限于薄DF接口。结果本研究的结论重新连接飞机不仅仅是由等离子体流入对面的分界线,但也是美联储从该地区的等离子体射流传播;进行了讨论。

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