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Ionospheric signatures of a plasma sheet rebound flow during a substorm onset

机译:电离层等离子体的签名板反弹流在亚暴爆发

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Magnetic reconnection in Earth's magnetotail produces fast earthward flows in the plasma sheet. Tailward flows are often observed associated with the earthward flows. Both return flow vortices at the flanks of an earthward flow channel and rebound of the earthward flow from the intense dipolar magnetic field of the inner magnetosphere have been shown to explain tailward flows observed near Earth. We combine plasma sheet measurements from Cluster with conjugate ground-based magnetic and auroral data to examine the development of earthward and tailward flow signatures during a substorm onset. We show for the first time observations of ionospheric signatures that appear to be associated with rebound flows. Because of the highly dynamic magnetotail configuration, special care is taken with the satellite footprint mapping. The ionospheric footprints produced by the event oriented AM02 model drift equatorward and poleward in response to tail magnetic field stretching and dipolarization, respectively. The footprint motion matches that of the ambient ionospheric structures, and the plasma flow measured by Cluster agrees with that inferred from the conjugate ionospheric observations, confirming the validity of the AM02 mapping. The ionospheric signatures of fast earthward flows during a substorm onset are shown to resemble the known signatures of quiet-time flows, including equatorward propagating auroral streamers inside a channel of enhanced poleward equivalent current. However, the large-scale dipolarization results in additional poleward expansion of the signatures, as has been predicted by simulations.
机译:在地球磁尾磁重联在等离子体产生快速的向地面的流动表。与向地面的流动。流漩涡的侧翼向地面的流向地面流的通道和反弹内在的强烈的偶极磁场磁气圈已被证明解释tailward流观察接近地球。表测量与共轭集群地面磁和极光数据检查向地球和tailward流的发展在亚暴开始签名。第一次观测的电离层这似乎与签名反弹流动。磁尾配置,特别注意与卫星足迹映射。电离层的足迹产生的事件面向AM02漂移朝赤道方向和模式向极响应尾巴磁场拉伸和dipolarization分别。足迹运动比赛的环境电离层结构和等离子体流衡量集群推断的同意从共轭电离层观测,确认的有效性AM02映射。电离层签名快速向地面的流动在亚暴爆发类似于所示签名的安静的时间流,包括朝赤道方向传播极光带进去一个通道的增强向极等效电流。导致额外的逐步扩大的区域签名,如被模拟预测。

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