论文标题

突然启动期间的时变磁磁带重新连接:全局MHD模拟

Time-Varying Magnetopause Reconnection during Sudden Commencement: Global MHD Simulations

论文作者

Eggington, J. W. B., Desai, R. T., Mejnertsen, L., Chittenden, J. P., Eastwood, J. P.

论文摘要

为了响应太阳风动态压力增强,磁层的压缩会产生强烈的电离层特征,并在地面磁场中产生急剧变化,称为突然开始(SC)。尽管由于磁尾触发了重新连接,因此这种压缩也与电离层极盖的收缩有关,但几天重新连接的任何变化的效果尚不清楚,并且是完全理解系统响应的关键组成部分。在这项研究中,我们通过使用Gorgon MHD代码进行全局模拟来探索SC期间日期耦合的时间依赖性性质,并用一系列具有不同参数的星际星际冲击来影响磁层。我们确定每种情况下重新连接区域的位置和演变,因为电击通过磁层传播,在日期重新连接速率中发现了强大的增强,并在最终触发尾部重新连接之前迅速扩大了Dayside Polar Cap。对于各种IMF方向而言,这种效果遍布,并且对于具有较高动态压力的事件,重新连接率最大。我们通过以较大的显式电阻率重复模拟来解释这一点,这表明在传播冲击前方附近的磁石等离子体的压缩可以重新连接更大的强度,并且在典型的太阳风条件下,在时代的磁磁度上的不同位置在不同的位置进行了重新连接。结果表明,在严重的太空天气事件开始期间,日子耦合的动态行为可能会使重新连接的稳定模型不准确。

In response to a solar wind dynamic pressure enhancement, the compression of the magnetosphere generates strong ionospheric signatures and a sharp variation in the ground magnetic field, termed sudden commencement (SC). Whilst such compressions have also been associated with a contraction of the ionospheric polar cap due to the triggering of reconnection in the magnetotail, the effect of any changes in dayside reconnection is less clear and is a key component in fully understanding the system response. In this study we explore the time-dependent nature of dayside coupling during SC by performing global simulations using the Gorgon MHD code, and impact the magnetosphere with a series of interplanetary shocks with different parameters. We identify the location and evolution of the reconnection region in each case as the shock propagates through the magnetosphere, finding strong enhancement in the dayside reconnection rate and prompt expansion of the dayside polar cap prior to the eventual triggering of tail reconnection. This effect pervades for a variety of IMF orientations, and the reconnection rate is most enhanced for events with higher dynamic pressure. We explain this by repeating the simulations with a large explicit resistivity, showing that compression of the magnetosheath plasma near the propagating shock front allows for reconnection of much greater intensity and at different locations on the dayside magnetopause than during typical solar wind conditions. The results indicate that the dynamic behaviour of dayside coupling may render steady models of reconnection inaccurate during the onset of a severe space weather event.

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