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Energetic electron acceleration in the downstream reconnection outflow region

机译:充满活力的电子加速下游重新连接流出地区

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Energetic electrons in an earthward reconnection outflow region have been observed by Cluster/Research with Adaptive Particle Imaging Detectors. We found a good correlation between the energetic electron enhancement and a normal magnetic field (B z ) enhancement within a 0.25-s time resolution. The large normal magnetic field is thought to be associated with magnetic reconnection because the negative/positive B z reversal observed during the fast proton tailward/earthward flow reversal is a good indicator of magnetic reconnection. Using the four-spacecraft Cluster, we can clearly see that this large positive B z structure propagates in the earthward direction. Furthermore, we find that the energy spectrum of the energetic electrons becomes harder toward the downstream region. A negative B z enhancement is also observed. The intensity of energetic electron enhancement associated with the negative B z enhancement is weaker than that associated with the positive one. To discuss the temporal and spatial profile of energetic electron acceleration in the magnetic reconnection region, we determined the spacecraft position in the temporally evolving magnetic structures of reconnection. Our observation clearly indicates second-step acceleration, in addition to X line acceleration, of energetic electrons in the downstream reconnection outflow region.
机译:高能电子在向地球的磁力线重连流出地区已经被观察到集群/研究自适应粒子成像探测器。高能电子增强和正常磁场(B z)增强在0.25 s时间分辨率。被认为是与磁性有关吗重新连接,因为消极/积极B z逆转期间观察到快质子是一个很好的tailward /向地面流动逆转磁场重联的指标。四个航天器集群中,我们可以清楚地看到这一点这个大积极B z结构传播向地球方向。精力充沛的能量谱向下游电子越来越难地区。观察到。增强与B - z增强与弱于积极的一个。空间高能电子的加快区域,磁场重联我们确定航天器的位置暂时变化的磁结构重新连接。第二次加速度,除了X线加速度,高能电子的下游地区重新连接流出。

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