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Coupling Between Mercury and its night-side magnetosphere: Cross-tail current sheet asymmetry and substorm current wedge formation

机译:水星与其夜间磁层之间的耦合:交叉尾电流片不对称和亚暴电流楔形成

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摘要

We analyzed MESSENGER magnetic field and plasma measurements taken during 319 crossings of Mercury's cross-tail current sheet. We found that the measured BZ in the current sheet is higher on the dawn-side than the dusk-side by a factor of ≈ 3 and the asymmetry decreases with downtail distance. This result is consistent with expectations based upon MHD stress balance. The magnetic fields threading the more stretched current sheet in the dusk-side have a higher plasma beta than those on the dawn-side, where they are less stretched. This asymmetric behavior is confirmed by mean current sheet thickness being greatest on the dawn-side. We propose that heavy planetary ion (e.g. Na+) enhancements in the dusk-side current sheet provides the most likely explanation for the dawn-dusk current sheet asymmetries. We also report the direct measurement of Mercury's substorm current wedge (SCW) formation and estimate the total current due to pileup of magnetic flux to be ≈ 11 kA. The conductance at the foot of the field-lines required to close the SCW current is found to be ≈ 1.2 S, which is similar to earlier results derived from modelling of Mercury's Region 1 field-aligned currents. Hence, Mercury's regolith is sufficiently conductive for the current to flow radially, then across the surface of Mercury's highly conductive iron core. Mercury appears to be closely coupled to its night-side magnetosphere by mass loading of upward flowing heavy planetary ions, and electrodynamically by field-aligned currents that transfer momentum and energy to the night-side auroral oval crust and interior.
机译:我们分析了在Mercury交叉尾电流表的319次穿越中获得的MESSENGER磁场和等离子体测量值。我们发现,当前工作表中测得的BZ在黎明侧比黄昏侧高≈3倍,并且不对称性随着向下距离的减小而减小。该结果与基于MHD压力平衡的预期一致。穿过黄昏侧电流更大的电流片的磁场的血浆β值要比伸张侧电流较少的黎明侧更高。这种不对称行为可以通过在黎明侧的平均当前薄板厚度最大来确认。我们建议黄昏侧电流表中的重行星离子(例如Na +)增强提供了黎明-黄昏电流表不对称性的最可能解释。我们还报告了对水星亚暴电流楔形(SCW)形成的直接测量,并估计了由于磁通量堆积而引起的总电流≈11 kA。发现关闭SCW电流所需的磁力线底部的电导为≈1.2 S,这与先前对Mercury的1区磁场对准电流建模所得的结果相似。因此,水星的硬质合金具有足够的导电性,电流可以径向流动,然后流过水星的高导电铁芯表面。汞似乎通过向上流动的重行星离子的质量载荷与其夜间磁层紧密耦合,并且通过将动量和能量转移到夜间极光椭圆形地壳和内部的场定向电流以电动力学方式耦合。

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