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Asymmetric development of magnetospheric storms during magnetic clouds and sheath regions

机译:磁云和鞘层地区磁层风暴的不对称发展

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[1] This study examines how the asymmetry in the low-latitude geomagnetic field evolves during sheath and magnetic cloud domains of interplanetary coronal mass ejections using the Dst, SYMH and ASYH indices. For all investigated storms the station that contributed most to Dst was located in the dusk sector while the smallest disturbance field was concentrated around dawn. We found that sheath region storms are associated with larger morning/ afternoon asymmetry than magnetic cloud storms. For sheath storms the station in the dusk sector contributed almost four times as much to Dst as the station in the dawn sector. Furthermore, the disturbance field is strongly variable during sheath storms. The results of this study suggest that for magnetic cloud storms the asymmetry arises mainly from ions drifting on open trajectories whereas in a case of a sheath driven storm the sudden intensifications of the substorm associated current systems add significantly to the asymmetry.
机译:[1]这项研究使用Dst,SYMH和ASYH指数研究了行星际冠状物质抛射的鞘层和磁云域在低纬度地磁场中的不对称性如何演化。对于所有调查到的风暴,对Dst贡献最大的站点位于黄昏区,而最小的干扰场则集中在黎明附近。我们发现,鞘区风暴比磁云风暴具有更大的早晨/下午不对称性。对于鞘风暴,黄昏区的气象站对Dst的贡献几乎是黎明区的气象站的四倍。此外,在鞘管风暴期间干扰场变化很大。这项研究的结果表明,对于磁性云风暴,不对称性主要是由于离子在开放轨道上漂移而引起的,而在鞘膜驱动的风暴中,与亚风暴有关的电流系统的突然增强会大大增加不对称性。

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