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The morphology of the topside ionosphere of Mars under different solar wind conditions: Results of a multi-instrument observing campaign by Mars Express in 2010

机译:不同太阳风条件下火星上层电离层的形态:2010年火星快车进行多仪器观测的结果

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摘要

Since the internally-generated magnetic field of Mars is weak, strong coupling is expected between the solar wind, planetary magnetosphere, and planetary ionosphere. However, few previous observational studies of this coupling incorporated data that extended from the solar wind to deep into the ionosphere. Here we use solar wind, magnetosphere, and ionosphere data obtained by the Mars Express spacecraft during March/April 2010 to investigate this coupling. We focus on three case studies, each centered on a pair of ionospheric electron density profiles measured by radio occultations, where the two profiles in each pair were obtained from the same location at art interval of only a few days. We find that high dynamic pressures in the solar wind are associated with compression of the magnetosphere, heating of the magnetosheath, reduction in the vertical extent of the ionosphere, and abrupt changes in electron density at the top of the ionosphere. The first three of these associations are analogous to the behavior of the plasma environment of Venus, but the final one is not. These results reinforce the notion that changes in solar forcing influence the behaviors of all of the tightly coupled regions within the Martian plasma environment. (C) 2015 Elsevier Ltd. All rights reserved.
机译:由于火星内部产生的磁场很弱,因此预计太阳风,行星磁层和行星电离层之间会产生强耦合。但是,很少有关于这种耦合的观测研究纳入了从太阳风到电离层深处的数据。在这里,我们使用由Mars Express太空船在2010年3月/ 4月获得的太阳风,磁层和电离层数据来研究这种耦合。我们集中于三个案例研究,每个案例研究都集中在通过无线电掩星法测量的一对电离层电子密度分布图上,其中每对中的两个分布图都是在同一天以艺术间隔从同一位置获得的。我们发现,太阳风中的高动态压力与磁层的压缩,磁层的加热,电离层垂直范围的减小以及电离层顶部电子密度的突然变化有关。这些关联中的前三个类似于金星的等离子体环境的行为,但最后一个不是。这些结果强化了这样一种观念,即太阳强迫的变化会影响火星等离子体环境内所有紧密耦合区域的行为。 (C)2015 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Planetary and space science》 |2016年第1期|24-34|共11页
  • 作者单位

    Boston Univ, Dept Astron, 725 Commonwealth Ave, Boston, MA 02215 USA|Boston Univ, Ctr Space Phys, 725 Commonwealth Ave, Boston, MA 02215 USA;

    Boston Univ, Ctr Space Phys, 725 Commonwealth Ave, Boston, MA 02215 USA;

    Univ Leicester, Leicester, Leics, England;

    IRF, Swedish Inst Space Phys, Kiruna, Sweden;

    IRF, Swedish Inst Space Phys, Kiruna, Sweden;

    IRF, Swedish Inst Space Phys, Kiruna, Sweden;

    IRF, Swedish Inst Space Phys, Kiruna, Sweden;

    Univ Calif Berkeley, Berkeley, CA 94720 USA;

    Univ Calif Berkeley, Berkeley, CA 94720 USA;

    Max Planck Inst Solar Syst Res, Gottingen, Germany;

    Max Planck Inst Solar Syst Res, Gottingen, Germany;

    Chinese Acad Sci, Inst Geol & Geophys, Key Lab Earth & Planetary Phys, Beijing 100029, Peoples R China;

    CNRS UGA, Inst Planetol & Astrophys Grenoble, F-38041 Grenoble 9, France|Polish Acad Sci, Space Res Ctr, PL-01237 Warsaw, Poland;

    NSSC, Beijing, Peoples R China;

    Univ Iowa, Iowa City, IA USA;

    Univ Cologne, Abt Planetenforsch, Rhein Inst filr Umweltforsch, D-50931 Cologne, Germany;

    Univ Cologne, Abt Planetenforsch, Rhein Inst filr Umweltforsch, D-50931 Cologne, Germany;

    Estec, Noordwijk, Netherlands;

    Univ Lancaster, Dept Phys, Lancaster LA1 4YB, England;

    European Space Agcy, Sci Support Off, NL-2200 AG Noordwijk, Netherlands;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mars; Solar wind; Magnetosphere; Ionosphere;

    机译:火星;太阳风;磁层;电离层;

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