磁层风暴期间两个半球场向电流的动力学——从磁图反演技术数据

V. Mishin, Y. Karavaev, S. Lunyushkin, Y. Penskikh, V. Kapustin
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引用次数: 1

摘要

利用现代磁图反演技术,通过分析两半球两极电离层饭岛-波特马拉1区场向电流(FACs)强度的动态变化,继续研究2001年8月17日磁层风暴期间发生的物理过程。对两种FAC不对称(黎明-黄昏和半球间)的动力学分析结果,以及之前在风暴期间观测到的霍尔电流和极帽边界依赖于行星际磁场(IMF)大方位角分量的行为规律,以及电导率的季节性行为,与开放磁层模式和两个半球的极光卫星观测结果一致。研究表明,亚暴过程中两种类型FAC分布不对称性的减弱几乎完全发生在冬季半球,而在夏季半球则要弱得多。我们将这种现象与长期暴露于夏季半球阳光照射的极地电离层中方位IMF分量的影响优于夜间磁层的亚暴对称效应联系起来。观测到风暴结束时太阳风压力脉冲产生的极帽和fas的对称效应。我们对这种效应提出了一个定性的解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamics of field-aligned currents in two hemispheres during a magnetospheric storm from magnetogram inversion technique data
We continue to study the physical processes occurring during the August 17, 2001 magnetospheric storm by analyzing the dynamics of the intensity of field-aligned currents (FACs) in Iijima—Potemra Region 1 in the polar ionospheres of the two hemispheres, using the modernized magnetogram inversion technique. The results obtained on the dynamics of two types of FAC asymmetry (dawn-dusk and interhemispheric), as well as the previously obtained regularities in the behavior of Hall currents and the polar cap boundaries depending on the large azimuthal component of the interplanetary magnetic field (IMF), observed during the storm, and the seasonal behavior of the conductivity are consistent with the open magnetosphere model and with satellite observations of auroras in two hemispheres. We have shown that the weakening of the asymmetry of two types in the FAC distribution during substorms in the storm under study occurs almost completely in the winter hemisphere and is much weaker in the summer one. We associate this phenomenon with the predominance of the effect of long-term exposure to the azimuthal IMF component in the sunlit polar ionosphere of the summer hemisphere over the substorm symmetrization effect of the night magnetosphere. A symmetrization effect of the polar cap and FACs, created by the solar wind pressure pulse at the end of the storm, is observed. We propose a qualitative explanation of this effect.
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