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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Different B_z response regions in the nightside magnetosphere after the arrival of an interplanetary shock: Multipoint observations compared with MHD simulations
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Different B_z response regions in the nightside magnetosphere after the arrival of an interplanetary shock: Multipoint observations compared with MHD simulations

机译:行星际激波到达后,夜间磁层中不同的B_z响应区域:与MHD模拟相比的多点观测

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摘要

We present different magnetic field changes in the nightside magnetosphere in response to the interplanetary (IP) shock on 17 December 2007, using multiple spacecraft observations and global MHD simulations. The coexistence of two distinct B_z response regions in the nightside magnetosphere in a single event has been observationally identified for the first time. From the inner magnetosphere to the tail, they are the positive response (B_z increase) and the negative response (B_z decrease). This scenario reasonably agrees with the MHD model prediction. Moreover, the analysis of the response delay time shows that, for the three satellites which observed the negative responses of B_z, the one closest to Earth was the last to respond. This phenomenon can also be understood based on the model prediction that the negative response region develops toward Earth after its formation. In addition, the temporarily enhanced earthward flows in the negative response region, which were suggested to be responsible for the formation of this region by previous model studies, were also supported by the observation. At last, a global view of the B_z response processes in the nightside magnetosphere is presented based on MHD simulations.
机译:2007年12月17日,我们使用多个航天器观测结果和全球MHD模拟结果,对夜间磁层响应行星际(IP)冲击提出了不同的磁场变化。首次观察到在单个事件中,夜空磁层中两个不同的B_z响应区域共存。从内部磁层到尾部,它们是正响应(B_z增大)和负响应(B_z减小)。该场景与MHD模型预测合理地吻合。此外,对响应延迟时间的分析表明,对于观察到B_z负响应的三颗卫星,最接近地球的一颗是最后一个响应。也可以根据模型预测来理解这种现象,即负响应区域在形成后会朝向地球发展。此外,观测结果也支持了负响应区域中暂时增强的地球流动,这被先前的模型研究认为是造成该区域形成的原因。最后,基于MHD模拟,给出了夜磁层B_z响应过程的全局视图。

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