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Role of filament plasma remnants in ICMEs leading to geomagnetic storms

机译:丝血浆残余在ICMES导致地磁风暴中的作用

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We studied three interplanetary coronal mass ejections associated with solar eruptive filaments. Filament plasma remnants embedded in these structures were identified using plasma, magnetic and compositional signatures. These features when impacted the Earth's terrestrial magnetosphere - ionosphere system, resulted in geomagnetic storms. During the main phase of associated storms, along with high density plasma structures, polarity reversals in the Y-component (dawn-to-dusk) of the interplanetary electric field seem to trigger major auroral substorms with concomitant changes in the polar ionospheric electric field. Here, we examine the cases where plasma dynamics and magnetic structuring in the presence of the prompt penetration of the electric field into the equatorial ionosphere affected the space weather while highlighting the complex geomagnetic storm-substorm relationship.
机译:我们研究了三个与太阳爆发细丝相关的三际冠状物质射血。使用血浆,磁性和组成特征鉴定嵌入在这些结构中的丝血浆残余物。这些功能在影响地球陆地磁层 - 电离层系统时,导致了地磁风暴。在相关风暴的主阶段,以及高密度等离子体结构,连续式电场的Y分量(黎明至黄昏)中的极性逆转似乎触发了极性电离层电场的主要变化的主要极光素。在这里,我们检查电场在电场迅速穿透到赤道电离层中的等离子体动力学和磁性结构的情况下影响了空间天气,同时突出了复杂的地磁风暴 - 代级关系。

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