确定火星电离层当前系统的特征

Jiawei Gao, Shibang Li, Anna Mittelholz, Zhaojin Rong, Moa Persson, Zhen Shi, Haoyu Lu, Chi Zhang, Xiaodong Wang, Chuanfei Dong, Lucy Klinger, Jun Cui, Yong Wei, Yongxin Pan
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引用次数: 0

摘要

当太阳风与未磁化行星的电离层相互作用时,会诱发形成诱导磁层的电流。这些电流及其相关磁场在控制带电粒子运动方面起着关键作用,这对于了解行星离子的逸散至关重要。与记录详实的磁层电流系统不同,对未磁化行星上的电离层电流系统的了解仍然较少,这限制了从恒星到这些行星的电动能量转移的量化。在这里,我们利用火星大气与挥发物演化(MAVEN)任务提供的八年数据,研究了火星电离层电流的全球分布。我们在电离层中发现了两个不同的电流系统:一个与太阳风电场一致,但呈现出垂直于电场方向的半球不对称;另一个与年平均中性风的流动模式相对应。我们认为这两个电流系统分别由太阳风和大气中性风驱动。我们的发现揭示了火星电离层动力学受到来自下方的中性风和来自上方的太阳风的影响,凸显了未磁化行星上电流系统的复杂性和耐人寻味性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterizing the current systems in the Martian ionosphere
When the solar wind interacts with the ionosphere of an unmagnetized planet, it induces currents that form an induced magnetosphere. These currents and their associated magnetic fields play a pivotal role in controlling the movement of charged particles, which is essential for understanding the escape of planetary ions. Unlike the well-documented magnetospheric current systems, the ionospheric current systems on unmagnetized planets remain less understood, which constrains the quantification of electrodynamic energy transfer from stars to these planets. Here, utilizing eight years of data from the Mars Atmosphere and Volatile EvolutioN (MAVEN) mission, we investigate the global distribution of ionospheric currents on Mars. We have identified two distinct current systems in the ionosphere: one aligns with the solar wind electric field yet exhibits hemispheric asymmetry perpendicular to the electric field direction; the other corresponds to the flow pattern of annually-averaged neutral winds. We propose that these two current systems are driven by the solar wind and atmospheric neutral winds, respectively. Our findings reveal that Martian ionospheric dynamics are influenced by the neutral winds from below and the solar wind from above, highlighting the complex and intriguing nature of current systems on unmagnetized planets.
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