首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Enhanced atmospheric oxygen outflow on Earth and Mars driven by a corotating interaction region
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Enhanced atmospheric oxygen outflow on Earth and Mars driven by a corotating interaction region

机译:同向相互作用区域推动地球和火星上大气氧的流出增加

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摘要

Solar wind controls nonthermal escape of planetary atmospheric volatiles, regardless of the strength of planetary magnetic fields. For both Earth with a strong dipole and Mars with weak remnant fields, the oxygen ion (O~+) outflow has been separately found to be enhanced during corotating interaction region (CIR) passage. Here we compared the enhancements of outflow on Earth and Mars driven by a CIR in January 2008, when Sun, Earth, and Mars were approximately aligned. The CIR propagation was recorded by STEREO, ACE, Cluster, and Mars Express (MEX). During the CIR passage, Cluster observed enhanced flux of upwelling oxygen ions above the Earth's polar region, while MEX detected an increased escape flux of oxygen ions in the Martian magnetosphere. We found that (1) under a solar wind dynamic pressure increase of 2-3 nPa, the rate of increase in Martian ~O+ outflow flux was 1 order higher than those on Earth; and (2) as a response to the same part of the CIR body, the rate of increase in Martian O~+ outflow flux was on the same order as for Earth. The comparison results imply that the dipole effectively prevents coupling of solar wind kinetic energy to planetary ions, and the distance to the Sun is also crucially important for planetary volatile loss in our inner solar system.
机译:不管行星磁场的强度如何,太阳风控制着行星大气挥发物的非热逸出。对于具有强偶极子的地球和具有弱剩余场的火星,在同向相互作用区域(CIR)通过过程中,氧离子(O〜+)的流出分别被发现增强。在这里,我们比较了在2008年1月太阳,地球和火星大致对准时,由CIR驱动的地球和火星流出量的增加。 CIR传播由STEREO,ACE,Cluster和Mars Express(MEX)记录。在CIR通过期间,Cluster观测到地球极地上方的上升流中的氧离子通量增加,而MEX发现火星磁层中氧离子的逸出通量增加。我们发现(1)在太阳风动压增加2-3 nPa的情况下,火星〜O +流出通量的增加速度比地球高1个数量级; (2)对CIR体同一部分的响应,火星O〜+流出通量的增加速率与地球相同。比较结果表明,偶极子有效地阻止了太阳风动能与行星离子的耦合,并且到太阳的距离对于我们内部太阳系中的行星挥发损失也至关重要。

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