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Response of large-scale ionospheric convection to substorm expansion onsets: A case study

机译:电离层大尺度对流对亚暴扩张爆发的响应:一个案例研究

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摘要

We have studied the response of large-scale ionospheric convection to substorm expansion onsets on the basis of two weak substorms of 1 May 2001, during which a large part of the dawn cell of the two-cell ionospheric convection pattern was monitored by the SuperDARN radars. Ionospheric convection began to enhance first in a localized region of the equatorward part of the dawn cell ~2 minutes before the expansion onsets of both substorms and then enhanced in the entire dawn cell successively. The enhanced convection persisted throughout their expansion phase, possibly even near the footprint of a plasma sheet region without fast flows observed by Geotail. These observations suggest that ionospheric convection begins to enhance just before substorm expansion onset and then enhances in the entire cell, possibly regardless of the presence of fast earthward flows in the corresponding plasma sheet region of the magnetotail. The global enhancement of ionospheric convection is consistent with that of magnetotail convection, which also begins just before onset.
机译:我们基于2001年5月1日的两次弱亚暴,研究了大型电离层对流对亚暴扩张开始的响应,在此期间,SuperDARN雷达监测了两单元电离层对流模式的大部分黎明单元。电离层对流首先在两次亚暴的爆发开始前约2分钟开始在黎明单元的赤道部分的局部区域开始增强,然后在整个黎明单元中依次增强。对流在整个膨胀阶段一直持续,甚至可能靠近等离子片区域的足迹,而Geotail没有观察到快速流动。这些观察结果表明,电离层对流刚好在亚暴扩张开始之前就开始增强,然后在整个单元中增强,这可能与磁尾的相应等离子片区域中是否存在快速的向地流无关。电离层对流的整体增强与磁尾对流的增强一致,磁尾对流的增强也就在发病之前就开始了。

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