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Common solar wind drivers behind magnetic storm–magnetospheric substorm dependency

机译:电磁风暴对磁层亚风暴的依赖性背后的常见太阳风驱动因素

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The dynamical relationship between magnetic storms and magnetospheric substorms is one of the most controversial issues of contemporary space research. Here, we address this issue through a causal inference approach to two corresponding indices in conjunction with several relevant solar wind variables. We find that the vertical component of the interplanetary magnetic field is the strongest and common driver of both storms and substorms. Further, our results suggest, at least based on the analyzed indices, that there is no statistical evidence for a direct or indirect dependency between substorms and storms and their statistical association can be explained by the common solar drivers. Given the powerful statistical tests we performed (by simultaneously taking into account time series of indices and solar wind variables), a physical mechanism through which substorms directly or indirectly drive storms or vice versa is, therefore, unlikely.
机译:磁暴和磁层亚暴之间的动力学关系是当代空间研究中最具争议的问题之一。在这里,我们通过对两个相应的指数以及几个相关的太阳风变量进行因果推论来解决这个问题。我们发现,行星际磁场的垂直分量是风暴和亚风暴的最强且共同的驱动力。此外,我们的结果表明,至少基于所分析的指标,没有统计证据表明亚风暴和风暴之间存在直接或间接的依存关系,它们的统计关联可以由常见的太阳驱动因素来解释。鉴于我们执行了强大的统计测试(同时考虑了指数和太阳风变量的时间序列),因此不太可能存在通过物理机制直接或间接引发风暴或反之亦然的物理机制。

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