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尾部重新连接引发亚暴起始。

Tail reconnection triggering substorm onset.

作者信息

Angelopoulos Vassilis, McFadden James P, Larson Davin, Carlson Charles W, Mende Stephen B, Frey Harald, Phan Tai, Sibeck David G, Glassmeier Karl-Heinz, Auster Uli, Donovan Eric, Mann Ian R, Rae I Jonathan, Russell Christopher T, Runov Andrei, Zhou Xu-Zhi, Kepko Larry

机构信息

Institute of Geophysics and Planetary Physics/ESS, University of California at Los Angeles, Los Angeles, CA 90095, USA.

出版信息

Science. 2008 Aug 15;321(5891):931-5. doi: 10.1126/science.1160495. Epub 2008 Jul 24.

Abstract

Magnetospheric substorms explosively release solar wind energy previously stored in Earth's magnetotail, encompassing the entire magnetosphere and producing spectacular auroral displays. It has been unclear whether a substorm is triggered by a disruption of the electrical current flowing across the near-Earth magnetotail, at approximately 10 R(E) (R(E): Earth radius, or 6374 kilometers), or by the process of magnetic reconnection typically seen farther out in the magnetotail, at approximately 20 to 30 R(E). We report on simultaneous measurements in the magnetotail at multiple distances, at the time of substorm onset. Reconnection was observed at 20 R(E), at least 1.5 minutes before auroral intensification, at least 2 minutes before substorm expansion, and about 3 minutes before near-Earth current disruption. These results demonstrate that substorms are likely initiated by tail reconnection.

摘要

磁层亚暴会突然释放先前存储在地球磁尾中的太阳风能量,这种能量会波及整个磁层并产生壮观的极光现象。目前尚不清楚亚暴是由流经近地磁尾(约10个地球半径,即6374公里)的电流中断引发的,还是由通常在磁尾更远处(约20至30个地球半径)出现的磁重联过程引发的。我们报告了在亚暴开始时对磁尾多个距离处进行的同步测量结果。在20个地球半径处观测到了磁重联,这发生在极光增强至少1.5分钟之前、亚暴扩展至少2分钟之前以及近地电流中断约3分钟之前。这些结果表明,亚暴很可能是由磁尾重联引发的。

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