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RCM-E simulation of ion acceleration during an idealized plasma sheet bubble injection

机译:在一个RCM-E模拟离子加速理想化的等离子板泡沫注入

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In this paper, we investigate the role of plasma sheet bubbles in the ion flux variations at geosynchronous orbit during substorm injections by using the Rice Convection Model with an equilibrated magnetic field model (RCM-E). The bubble is initiated in the near-Earth plasma sheet with a localized reduction in entropy parameter PV~(5/3) following a substorm growth phase. In the expansion phase, characteristic features of substorm injections are reproduced; that is, there is a prominent dispersionless flux increase for energetic protons (>40 keV) and a flux decrease for lower-energy protons near midnight geosynchronous orbit while there is dispersive flux enhancement near the dusk sector. We find that the injection boundary is well coincident with the earthward boundary of the bubble, inside which the depletion of plasma content causes the magnetic field dipolarization, and in return, the magnetic field collapse energizes particles and alters the drift paths dramatically. Our results also show that a high-PV~(5/3) island is pushed ahead of the fast earthward propagating bubble, and a dipolarization front forms between them. Within the high-PV~(5/3) island, the diamagnetic effect makes the plasma pressure increase and the strength of the magnetic field decrease to a local minimum. We suggest that plasma sheet bubbles are elementary vehicles of substorm time particle injections from the main plasma sheet to the inner magnetosphere.
机译:在本文中,我们研究等离子体的作用泡沫板的离子通量的变化地球同步轨道在注射亚暴通过使用大米的对流模型平衡磁场模型(RCM-E)。泡沫是在近地发起的等离子体表和局部熵的减少亚暴后参数p - v ~(5/3)增长阶段。功能的亚暴注射复制;也就是说,有一个著名的dispersionless通量增加对高能质子(> 40 keV)和一个为附近低能质子通量减少午夜地球同步轨道而存在色散通量增强近黄昏。我们发现注射边界重合的向地面的边界泡沫,在等离子体的损耗内容引起磁场dipolarization,作为回报,磁场崩溃激发粒子和改变了漂移路径巨大的变化。高pv ~(5/3)岛是推的快向地面传播泡沫,和一个他们之间dipolarization面前形式。高pv ~(5/3)岛,抗磁性的效果使等离子体压力增加和磁场强度减少到一个局部最小值。泡沫是基本车辆亚暴的时间从主等离子体粒子注射单内部磁场。

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