Statistical Distribution of Dawnside Auroral Polarization Streams

IF 4.6 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Jiang Liu, Colin Forsyth, L. R. Lyons, Chih-Ping Wang, Vassilis Angelopoulos, Andrei Runov, Sheng Tian, Yangyang Shen, Johnathan K. Burchill, S. Milan
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引用次数: 0

Abstract

Dawnside auroral polarization streams (DAPS) are fast eastward flows in the dawn convection cell of Earth's ionosphere. With a steep flow gradient near the interface between Region 1 and 2 currents and a peak poleward of it, DAPS were suggested to be responsible for instabilities and dramatic events in the magnetosphere-ionosphere (M-I) system. To predict these events, it is important to investigate when and where DAPS prefer to occur and how they are related to other M-I phenomena. We conduct this investigation statistically using 10 years of Swarm data and find that DAPS under sunlit and dark ionospheric conditions exhibit different dependencies on magnetic local times and geomagnetic activities, reflecting a complicated interplay between magnetotail dynamics and ionospheric conductance. The statistical results also reveal a strong correlation between DAPS and embedded Region 2 currents. These findings provide new insights into the DAPS generation mechanism.

Abstract Image

曙光极光偏振流的统计分布
黎明极光偏振流(DAPS)是地球电离层黎明对流单元中的快速向东流动。由于DAPS在1区和2区电流交界面附近有一个陡峭的流动梯度,并且在其极向处有一个峰值,因此可能是磁层-电离层(M-I)系统不稳定和剧烈事件的原因。为了预测这些事件,重要的是要调查DAPS倾向于何时何地发生,以及它们与其他M-I现象的关系。我们利用10年的Swarm数据进行了统计研究,发现在阳光和黑暗电离层条件下的DAPS对磁地方时和地磁活动的依赖不同,反映了磁尾动力学与电离层电导之间复杂的相互作用。统计结果还揭示了DAPS与嵌入式2区电流之间的强相关性。这些发现为DAPS的产生机制提供了新的见解。
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来源期刊
Geophysical Research Letters
Geophysical Research Letters 地学-地球科学综合
CiteScore
9.00
自引率
9.60%
发文量
1588
审稿时长
2.2 months
期刊介绍: Geophysical Research Letters (GRL) publishes high-impact, innovative, and timely research on major scientific advances in all the major geoscience disciplines. Papers are communications-length articles and should have broad and immediate implications in their discipline or across the geosciences. GRLmaintains the fastest turn-around of all high-impact publications in the geosciences and works closely with authors to ensure broad visibility of top papers.
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