首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Energetic electron precipitation during high-speed solar wind stream driven storms
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Energetic electron precipitation during high-speed solar wind stream driven storms

机译:在高速高能电子降水太阳风流驱动的风暴

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Electron precipitation from the Earth's inner magnetosphere transmits solar variability to the Earth's upper atmosphere and may affect surface level climate. Here we conduct a superposed epoch analysis of energetic electrons observed by the NOAA POES spacecraft during 42 high-speed solar wind stream (HSS) driven geomagnetic storms to determine the temporal evolution and global distribution of the precipitating flux. The flux of trapped and precipitating E > 30 keV electrons increases immediately following storm onset and remains elevated during the passage of the HSS. In contrast, the trapped and precipitating relativistic electrons (E > 1 MeV) drop out following storm onset and subsequently increase during the recovery phase to levels which eventually exceed the prestorm levels. There is no evidence for enhanced precipitation of relativistic electrons during the MeV flux drop out, suggesting that flux drop outs during the main phase of HSS-driven storms are not due to precipitation to the atmosphere. On average, the flux of precipitating E> 30 keV electrons is enhanced by a factor of ~10 during the passage of the high-speed stream at all geographic longitudes. In contrast, the precipitating relativistic electron count rate is observed to peak in the region poleward of the South Atlantic Anomaly. During the passage of the high-speed stream, the flux of precipitating E> 30 keV electrons peaks in the region from 2100 to 1200 magnetic local time at low L (4 30 keV electrons in both regions.
机译:电子降水从地球内部磁气圈传递太阳能可变性地球大气层和可能影响表面水平的气候。分析观察到的高能电子的NOAA坡航天器在42高速太阳能风流(HSS)驱动的地磁风暴确定时间进化和全球沉淀通量的分布。困和诱发E > 30 keV电子增加风暴后发病在高速钢的通道仍居高不下。相比之下,被困和沉淀相对论性电子(E > 1兆电子伏)退出风暴后发病,随后增加在经济复苏阶段的水平最终超过prestorm水平。没有证据表明增强降水相对论电子在兆电子伏通量下降,这表明通量下降中出局HSS-driven风暴并不是由于的主要阶段大气降水。诱发E > 30 keV电子通量增强了~ 10倍的流逝高速流地理经度。相对论性电子计数率是观察到在南大西洋的地区向极达到顶峰异常。流,诱发E > 30 keV的通量电子在该地区从2100年到1200年达到顶峰当地时间在低磁L (4 30 keV电子在两个地区。

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