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Formation and evolution of high-plasma-pressure region in the near-Earth plasma sheet: Precursor and postcursor of substorm expansion onset

机译:high-plasma-pressure的形成和演化地区近地等离子板:前体和亚暴postcursor开始扩张

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摘要

Cause of substorm expansion onset is one of the major problems in the magnetospheric study. On the basis of a global magnetohydrodynamic (MHD) simulation, Tanaka et al. (2010) suggested that formation and evolution of a high-pressure region (HPR) in the near-Earth plasma sheet could result in sudden intensification of the Region 1 field-aligned current and the westward auroral electrojet. In this sense, the formation and evolution of the HPR are a key in understanding the cause of the onset. On 5 April 2009, three probes of the Time History of Events and Macroscale Interactions during Substorms (THEMIS) were located at X_(GSM)~-11 Re around the equator, which provide unique opportunity to investigate the spatial-temporal evolution of the HPR near the substorm expansion onset. Just before the onset, a positive excursion of the plasma pressure appeared at the outermost probe first, followed by the inner ones. Just after the onset, the opposite sequence took place. A positive excursion of the Y component of the current density was observed near the onset by the THEMIS probes and followed by a decrease trend. A similar variation was also found in the MHD simulation. All these features are consistent with the simulation result that a squeeze of the plasma from the plasma sheet results in the formation of the HPR before the onset and that the accumulated plasma spreads outward after the onset. The HPR is shown to be important for the dynamics of the magnetosphere during a substorm.
机译:亚暴扩张的原因之一磁性层的研究面临的主要问题。一个全球的基础磁流体动力(磁流体动力)模拟,田中et al。(2010)建议高压地区的形成和演化(HPR)在近地等离子表可能的结果突然加剧该地区的1field-aligned当前和西进极光电喷流。HPR的进化是一个关键的理解发病的原因。调查的时间事件和历史宏观尺度相互作用在亚暴(裁判)是位于间(GSM) ~ -11 Re赤道,它提供了独特的机会调查的时空演化HPR附近的亚暴开始扩张。在开始之前,一个正的偏移等离子体的压力出现在最外层的调查第一,紧随其后的是内在的。发病,相反的顺序发生。积极的游览的Y分量观察电流密度附近爆发了忒弥斯探测器和减少紧随其后的趋势。磁流体动力模拟。仿真结果的挤压等离子体的等离子体片的结果形成前的HPR发作累积后等离子体向外传播发病。动态的磁层亚暴。

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