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Why are relativistic electrons persistently quiet at geosynchronous orbit in 2009?

机译:为什么相对论电子在2009年地球同步轨道上一直保持安静?

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Relativistic electrons at geosynchronous orbit (GEO) were persistently quiet in 2009 for almost a whole year. The solar wind speed, which has been known as a primary parameter controlling the outer belt electrons, was very slow in 2009 as expected and at a comparably low level as of 1997 when we did not observe such a persistently quiet condition. Since the interplanetary magnetic field (IMF) was quite different between 1997 and 2009, the difference in IMF is a possible cause of the difference in the electron flux levels, providing an important clue to understand the complex source and loss process of relativistic electrons at GEO. We suggest that the extremely weak IMF of the very slow solar wind plays an essential role in diminishing the source processes themselves associated with magnetic storms and substorms, and in turn to suppress the relativistic electron flux at GEO over the time scale of a year, as an inevitable consequence of extremely weak open magnetic field of the Sun associated with the extremely weak current solar minimum.
机译:2009年,地球同步轨道(GEO)的相对论电子一直安静了整整一年。太阳风速被称为控制外层带电子的主要参数,它在2009年非常缓慢,与1997年相比处于较低水平,当时我们没有观察到这种持续的安静状态。由于1997年和2009年的行星际磁场(IMF)完全不同,因此IMF的差异可能是电子通量水平差异的可能原因,这为理解GEO相对论电子的复杂来源和损耗过程提供了重要线索。我们建议,极慢的太阳风的极弱IMF在减少与磁暴和亚暴有关的源过程本身中起着至关重要的作用,进而在一年的时间尺度上抑制了GEO的相对论电子通量,因为太阳极弱的开放磁场与极弱的当前太阳极小度相关的必然结果。

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