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Magnetic Topology Response to the 2003 Halloween ICME Event at Mars

机译:电磁拓扑应对2003年万圣节ICME事件在火星

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Understanding how the Mars plasma environment responds to space weather events provides insights into the early Sun-Mars interaction and helps constrain the extrapolation of atmospheric loss back in time. The 2003 Halloween interplanetary coronal mass ejection (ICME) event is one of the most extreme space weather events encountered by Mars during the last two decades. Mars Global Surveyor's circular orbit at ~400 km allows us to observationally study the magnetic topology response to this extreme event globally for the first time.We analyze the suprathermal electron data and magnetic field measurements from Mars Global Surveyor to infer magnetic topology before, during, and after this ICME event and quantify the variation of the topology over both weak and strong crustal regions and correlate the variation with the upstream dynamic pressure. Over weak crustal regions, more draped field lines and fewer closed field lines are observed under high dynamic pressures, implying a deeper interplanetary magnetic field penetration during the ICME event. Over dayside strong crustal regions, the dominant magnetic topology switches from closed field lines during quiet periods to open field lines during disturbed periods, suggesting more reconnection occurring between the crustal magnetic fields and interplanetary magnetic field. This mixed magnetic topological response is consistent with predictions from magnetohydrodynamic simulations for ICME events in previous studies.
机译:了解火星的等离子体环境提供对空间天气事件洞察Sun-Mars交互和早期有助于限制大气的外推损失时间。星际日冕物质抛射(ICME)事件是一种最极端空间天气事件吗遇到火星在过去的二十年。火星环球探测器的圆形轨道~ 400公里让我们根据观察研究磁拓扑全球应对这种极端事件第一次。电子数据和磁场测量从火星环球探测器来推断磁ICME拓扑之前、期间和之后事件和量化拓扑的变化在弱和强和地壳区域关联与上游动态变化压力。电场线和更少的封闭电场线观察到在高动态压力的情况下,这意味着一个更深层次的行星际磁场渗透ICME事件。地壳地区,占主导地位的磁场拓扑开关在闭合磁力线安静在扰动时期开放电场线时期,这意味着更多的重新连接在地壳磁场和之间行星际磁场。电磁拓扑响应是一致的从磁流体动力模拟预测ICME事件的先前的研究。

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