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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Physical mechanism causing rapid changes in ultrarelativistic electron pitch angle distributions right after a shock arrival: Evaluation of an electron dropout event
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Physical mechanism causing rapid changes in ultrarelativistic electron pitch angle distributions right after a shock arrival: Evaluation of an electron dropout event

机译:激波到达后立即导致超相对论电子俯仰角分布迅速变化的物理机制:电子脱落事件的评估

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Three mechanisms have been proposed to explain relativistic electron flux depletions (dropouts) in the Earth's outer radiation belt during storm times: adiabatic expansion of electron drift shells due to a decrease in magnetic field strength, magnetopause shadowing and subsequent outward radial diffusion, and precipitation into the atmosphere (driven by EMIC wave scattering). Which mechanism predominates in causing electron dropouts commonly observed in the outer radiation belt is still debatable. In the present study, we evaluate the physical mechanism that may be primarily responsible for causing the sudden change in relativistic electron pitch angle distributions during a dropout event observed by Van Allen Probes during the main phase of the 27 February 2014 storm. During this event, the phase space density of ultrarelativistic (>1 MeV) electrons was depleted by more than 1 order of magnitude over the entire radial extent of the outer radiation belt (3
机译:提出了三种机制来解释风暴期间地球外部辐射带中相对论性的电子通量损耗(漏失):由于磁场强度降低,磁层顶遮蔽以及随后的向外径向扩散以及向大气中的沉淀而导致的电子漂移壳的绝热膨胀。大气(由EMIC波散射驱动)。哪种机制在引起通常在外部辐射带中观察到的电子脱落方面占主导地位,仍是有争议的。在本研究中,我们评估了物理机制,这可能是造成Van Allen Probes在2014年2月27日风暴的主要阶段观测到的失落事件期间相对论电子俯仰角分布突然变化的原因。在此事件期间,超相对论(> 1 MeV)电子的相空间密度在发射后不到6小时内在外部辐射带的整个径向范围内(3

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