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Effect of EMIC waves on relativistic and ultrarelativistic electron populations: Ground-based and Van Allen Probes observations

机译:EMIC波对相对论和超相对论电子种群的影响:地面和范艾伦探针观测

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We study the effect of electromagnetic ion cyclotron (EMIC) waves on the loss and pitch angle scattering of relativistic and ultrarelativistic electrons during the recovery phase of a moderate geomagnetic storm on 11 October 2012. The EMIC wave activity was observed in situ on the Van Allen Probes and conjugately on the ground across the Canadian Array for Real-time Investigations of Magnetic Activity throughout an extended 18 h interval. However, neither enhanced precipitation of >0.7MeV electrons nor reductions in Van Allen Probe 90° pitch angle ultrarelativistic electron flux were observed. Computed radiation belt electron pitch angle diffusion rates demonstrate that rapid pitch angle diffusion is confined to low pitch angles and cannot reach 90°. For the first time, from both observational and modeling perspectives, we show evidence of EMIC waves triggering ultrarelativistic (~2-8MeV) electron loss but which is confined to pitch angles below around 45° and not affecting the core distribution.
机译:我们研究了2012年10月11日中等地磁风暴恢复阶段电磁离子回旋加速器(EMIC)波对相对论和超相对论电子的损耗和螺距角散射的影响。在Van Allen上就地观测到EMIC波的活动在整个加拿大阵列中,探针和共轭物在地面上共轭,用于在延长的18小时间隔内实时调查磁活动。但是,没有观察到> 0.7MeV电子的增强析出,也没有观察到Van Allen Probe 90°俯仰角超相对论电子通量的减少。计算出的辐射带电子俯仰角扩散速率表明,快速俯仰角扩散仅限于低俯仰角,不能达到90°。从观察和建模的角度来看,我们首次显示EMIC波触发超相对论(〜2-8MeV)电子损失的证据,但仅限于俯仰角在45°以下且不影响堆芯分布的情况。

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