论文标题

偶极化前后的薄电流

Thin current sheet behind the dipolarization front

论文作者

Nakamura, R., Baumjohann, W., Nakamura, M., T. K., Panov, E., V., Schmid, D., Varsani, A., Apatenkov, S., Sergeev, V. A., Birn, J., Nagai, T., Gabrielse, C., Andre, M., Burch, J. L., Carr, C., Dandouras, I. S, Escoubet, C. P., A, Fazakerley, N., Giles, B. L., Contel, O. Le, Russell, C. T., Torbert, R. B.

论文摘要

我们报告了MMS(磁层多尺度)和群集的近地磁尾尾库中快速流动和相关的电流扰动的独特结合观察,此前,在〜14:10 UT的正湾发作之前,2018年9月8日,MMS和群集都位于x〜-14 re。通过群集和MMS检测到局部快速流的偶极前(DF),几乎同时在黎明dusk方向上分离〜4。从能量光谱的比较中揭示了绝热电子加速度特征,证实两个航天器遇到了相同的DF。我们基于多尺度多点数据分析分析了当前表结构的变化。当前的纸在DF通过期间变厚,但随后暂时稀薄的另一个流量相关,以另一个流量增强,以最初流动的黎明一侧为中心。 MMS和簇观察到非赤道区域中的强烈垂直和平行电流,主要是在当前薄板变薄的间隔内。 MMS和群集的最大场对准电流都是指向尾的。对MMS数据的详细分析表明,强烈的场对准电流由多个小规模的电流层组成,并伴随着黎明 - 杜斯克流动剪切区域的霍尔电流。我们建议当前的薄板变薄与流动弹跳过程和/或重新连接的扩展/激活有关。基于这些中尺度和小尺度的多点观测,在构成电流楔的开发之前,推断出流量和电流表的3D演变。

We report a unique conjugate observation of fast flows and associated current sheet disturbances in the near-Earth magnetotail by MMS (Magnetospheric Multiscale) and Cluster preceding a positive bay onset of a small substorm at ~14:10 UT, Sep. 8, 2018. MMS and Cluster were located both at X ~-14 RE. A dipolarization front (DF) of a localized fast flow was detected by Cluster and MMS, separated in the dawn-dusk direction by ~4 RE, almost simultaneously. Adiabatic electron acceleration signatures revealed from comparison of the energy spectra confirm that both spacecraft encounter the same DF. We analyzed the change in the current sheet structure based on multi-scale multi-point data analysis. The current sheet thickened during the passage of DF, yet, temporally thinned subsequently associated with another flow enhancement centered more on the dawnward side of the initial flow. MMS and Cluster observed intense perpendicular and parallel current in the off-equatorial region mainly during this interval of the current sheet thinning. Maximum field-aligned currents both at MMS and Cluster are directed tailward. Detailed analysis of MMS data showed that the intense field-aligned currents consisted of multiple small-scale intense current layers accompanied by enhanced Hall-currents in the dawn-dusk flow-shear region. We suggest that the current sheet thinning is related to the flow bouncing process and/or to the expansion/activation of reconnection. Based on these mesoscale and small-scale multipoint observations, 3D evolution of the flow and current-sheet disturbances was inferred preceding the development of a substorm current wedge.

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