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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Evolution of Asymmetrically Displaced Footpoints During Substorms
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Evolution of Asymmetrically Displaced Footpoints During Substorms

机译:不对称取代Footpoints的进化在亚暴的

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It is well established that a transverse (y) component in the interplanetary magnetic field (IMF) induces a B_y component in the closed magnetosphere through asymmetric loading and/or redistribution of magnetic flux. Simultaneous images of the aurora in the two hemispheres have revealed that conjugate auroral features are displaced longitudinally during such conditions. Although the direction and magnitude of this displacement show correlations with IMF clock angle and dipole tilt, single events show large temporal and spatial variability of this displacement. For instance, we know little about how the displacement changes during a substorm. A previous case study demonstrated that displaced auroral forms, associated with the prevailing IMF orientation, returned to a more symmetric configuration during the expansion phase of two substorms. Using the far ultraviolet cameras on board the Imager for Magnetopause-to-Aurora Global Exploration and Polar satellites, we have identified multiple events where conjugate auroral images are available during periods with substorm activity and IMF B_y ≠ 0. We identify conjugate auroral features and investigate how the asymmetry evolves during the expansion phase. We find that the system returns to a more symmetric state in the events with a clear increase in the nightside reconnection rate and that the displacement remains unchanged in the events with little or no net closure of open magnetic flux. The return to a more symmetric state can therefore be interpreted as the result of increased reconnection rate in the magnetotail during the expansion phase, which reduces the asymmetric lobe pressure.
机译:它是确定一个横向(y)行星际磁场分量(IMF)诱发的话组件的关闭通过不对称加载和/或磁气圈磁通的再分配。在两个半球的极光图像表明共轭极光特性流离失所的纵向在这样的条件下。虽然它的方向和大小位移显示相关性与国际货币基金组织的时钟角度和偶极子倾斜,显示出较大的单一事件时间和空间变化位移。如何在亚暴的位移变化。以前的案例研究表明,流离失所极光的形式,与现行国际货币基金组织(IMF)有关取向,回到一个更对称的配置在扩张阶段的两个亚暴。董事会Magnetopause-to-Aurora成像仪我们拥有全球勘探和极地卫星确定了多个事件共轭极光图像是可用的时期亚暴活动和国际货币基金组织的话≠0。共轭极光特性和研究不对称的发展在扩张阶段。我们发现系统返回到更多对称的状态有一个清晰的事件阴面重联率和增加的位移不变事件与很少或没有净关闭打开磁通。因此可以理解为结果状态磁重联率增加在扩张阶段,这减少了不对称叶压力。

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