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Mars Global Surveyor Measurements of the Martian Solar Wind Interaction

机译:火星全球测量员对火星太阳风相互作用的测量

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摘要

The solar wind at Mars interacts with the extended atmosphere and small-scale crustal magnetic fields. This interaction shares elements with a variety of solar system bodies, and has direct bearing on studies of the long-term evolution of the Martian atmosphere, the structure of the upper atmosphere, and fundamental plasma processes. The magnetometer (MAG) and electron reflectometer (ER) on Mars Global Surveyor (MGS) continue to make many contributions toward understanding the plasma environment, thanks in large part to a spacecraft orbit that had low periapsis, had good coverage of the interaction region, and has been long-lived in its mapping orbit. The crustal magnetic fields discovered using MGS data perturb plasma boundaries on timescales associated with Mars' rotation and enable a complex magnetic field topology near the planet. Every portion of the plasma environment has been sampled by MGS, confirming previous measurements and making new discoveries in each region. The entire system is highly variable, and responds to changes in solar EUV flux, upstream pressure, IMF direction, and the orientation of Mars with respect to the Sun and solar wind flow. New insights from MGS should come from future analysis of new and existing data, as well as multi-spacecraft observations.
机译:火星上的太阳风与大气层和小型地壳磁场相互作用。这种相互作用与各种太阳系物体共享元素,并且直接关系到火星大气长期演化,高层大气结构和基本等离子体过程的研究。火星全球测量师(MGS)上的磁力仪(MAG)和电子反射仪(ER)继续为理解等离子体环境做出了许多贡献,这在很大程度上要归功于航天器的轨道具有低的耳廓,并具有良好的相互作用区域覆盖范围,并在其映射轨道上长期存在。利用MGS数据发现的地壳磁场在与火星自转相关的时间尺度上扰动了等离子体边界,并在行星附近形成了复杂的磁场拓扑。 MGS已对等离子体环境的每个部分进行了采样,从而确认了先前的测量结果并在每个区域进行了新发现。整个系统变化很大,并且可以响应太阳EUV通量,上游压力,IMF方向以及火星相对于太阳和太阳风的方向的变化。 MGS的新见识应来自对新数据和现有数据的未来分析,以及对多航天器的观测。

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