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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >27 August 2001 substorm: Preonset phenomena, two main onsets, field-aligned current systems, and plasma flow channels in the ionosphere and in the magnetosphere
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27 August 2001 substorm: Preonset phenomena, two main onsets, field-aligned current systems, and plasma flow channels in the ionosphere and in the magnetosphere

机译:2001年8月27日代名户:前电离层和磁层中的两种主要持续腹膜,现场对齐电流系统和等离子体流动通道

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摘要

We supplement the results of the 27 August 2001 substorm studied earlier in the series of papers. Described is the plasma flow in the nightside ionosphere from the near-polar region from the polar cap to the auroral oval during the substorm preonset phase and two expansion onsets, EO1 and EO2, produced by reconnection in the closed tail (magnetic reconnection (MR1) and in the open tail lobes (MR2), respectively. We discuss the location of the MR2 region (is it near, middle, and/or distant tail?) and the EO2 trigger mechanism. The upward substorm current wedge field-aligned current (FAC) and the downward FAC in the polar cap dusk sector that were both produced by different types of magnetosphere-ionosphere feedback instability are found to provide the main contribution to the system of FACs during EO1 and EO2. Also, we obtain the estimates for the EO1 and EO2 power and energy. Addressed are the variations in the tail lobe magnetic flux and their (variations) association with EO2. In addition, we describe a 3-D system of mesoscale cells, each of which involves a plasma vortex and a local FAC maximum. The cells of this system in the inner magnetosphere and in the tail lobes intensify one after other within 2 min interval. At last, we substantiate the assumption that the fast plasma flow recorded by the Cluster satellites 7 min prior to EO1 was a bursty bulk flow from the most distant tail.
机译:我们补充了2001年8月27日的结果,这些结果在一系列论文中提前研究过。描述是夜间电离层中的等离子体流动从近极区域从极帽到极光椭圆形的代级出版阶段和两个膨胀靴,EO1和EO2,通过闭合尾部重新连接产生(磁重新连接(MR1)在开放的尾叶(MR2)中。我们讨论了MR2区域的位置(靠近,中间和/或尾部?)和EO2触发机制。向上的取代电流楔形场对准电流( FAC)和既通过不同类型的磁层离子层反馈不稳定性产生的极性盖子扇区的下面的下面都会发现对EO1和EO2期间的FACS系统提供主要贡献。此外,我们获得了估计EO1和EO2功率和能量。解决是尾叶磁通量的变化及其与EO2的(变化)关联。此外,我们描述了一个三维Mescle细胞系统,每个系统涉及等离子体涡流和al OCAL FAC最大。该系统的细胞在内磁层和尾叶中的细胞在2分钟内接一个地加强了一个。最后,我们证实了簇卫星在EO1之前记录的快速等离子体流动的假设是来自最远尾的突发散装流量。

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