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Dynamics of the ring current and ion fluxes at low altitudes during the February 27-28, 2014 magnetic storm

机译:2014年2月27日至28日磁暴期间低空环电流和离子通量的动力学

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A comparative analysis has been performed for the dynamics of the ring current and ion fluxes at low altitudes during the February 27, 2014 geomagnetic storm. We use concurrent experimental data on ion fluxes with an energy of similar to 30 to 250 keV in the near-equatorial magnetospheric region at altitudes up to 30000 km from the Van Allen Probes satellite and at a polar orbit up to 1000 km from the Polar Orbiting Environmental Satellite (POES). The main phase of the storm was characterized by increased ion fluxes with E < 100 keV and decreased fluxes with E > 100 keV, both near the ring current and in the low-orbit equatorial region, reflecting the fact that the particle spectrum of the ring current in the main phase of the storm becomes softed. The observed phenomenon may originate from the precipitation of ring-current particles registered by POES below the isotropization boundary. It was shown that the variations in ion fluxes at low orbit during the geomagnetic storm generally reflect the ring current dynamics, although each region under consideration has its own specific features complementing the general pattern of the Earth's magnetosphere dynamics.
机译:在2014年2月27日的地磁风暴期间,针对低海拔地区的环流和离子通量的动力学进行了比较分析。我们在离赤道磁层地区距Van Allen Probes卫星不超过30000 km的极地轨道和距极地轨道不超过1000 km的极地轨道上使用能量近似为30至250 keV的离子通量的并发实验数据环境卫星(POES)。风暴的主要阶段的特征是在环电流附近和低轨道赤道区域内,E <100 keV的离子通量增加而E> 100 keV的通量减少,这反映了环的粒子光谱风暴主要阶段的电流变软了。观察到的现象可能源于各向同性边界以下POES记录的环流粒子的沉淀。结果表明,地磁风暴​​期间低轨道上离子通量的变化通常反映了环流动力学,尽管所考虑的每个区域都有其自身的特定特征来补充地球磁层动力学的一般模式。

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