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Magnetosphere response to high-speed solar wind streams: A comparison of weak and strong driving and the importance of extended periods of fast solar wind

机译:磁层对高速太阳风的响应:弱驱动和强驱动的比较以及延长的快速太阳风的持续时间的重要性

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摘要

Much attention has been focused on the reaction of the magnetosphere to the solar wind during the recent extended solar minimum (2006–2010). Although this period was exceptionally quiet when categorized by some parameters (e.g., the number of sunspots) the solar wind still contained features which impacted the Earth's magnetosphere and caused geomagnetic disturbances. Recurrent corotating interaction regions (CIRs) and associated high-speed solar wind streams (HSSs) are typically associated with the declining phase of the solar cycle and were a regular feature of the solar wind during the most recent solar minimum. Here we compare and contrast strong and weak HSSs in the solar wind and their subsequent effect within the Earth's magnetosphere. We find significant differences between strong and weak HSS effects in the plasmasphere, in the ion and electron plasma sheets, and in the outer electron radiation belt. A density-temperature description of the outer radiation belt is shown to shed light on why the radiation belt flux is observed to return at a higher level after the arrival of strong HSSs than before strong HSSs and why the flux is observed to return at a lower level after the arrival of weak HSSs than before weak HSSs.
机译:在最近的最低日照时间(2006-2010年)期间,磁层对太阳风的反应已经引起了很多关注。尽管按某些参数(例如黑子的数目)分类时,这段时期格外安静,但太阳风仍然具有影响地球磁层并引起地磁干扰的特征。循环同向交互作用区域(CIR)和相关的高速太阳风流(HSS)通常与太阳周期的下降阶段有关,并且是最近一次太阳最低峰期间太阳风的常规特征。在这里,我们比较并对比了太阳风中强和弱的HSS,以及它们在地球磁层中的后续影响。我们在等离子层,离子和电子等离子片以及外部电子辐射带中发现了强和弱HSS效应之间的显着差异。外部辐射带的密度-温度描述可以说明为什么在强HSS到达后观察到辐射带通量会比在强HSS之前返回更高的水平,以及为什么观察到通量以更低的强度返回HSS到达之后的水平要比HSS之前的水平高。

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