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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Making Waves: Mirror Mode Structures Around Mars Observed by the MAVEN Spacecraft
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Making Waves: Mirror Mode Structures Around Mars Observed by the MAVEN Spacecraft

机译:在火星波澜:镜像模式结构观察到的MAVEN探测器

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We present an in-depth analysis of a time interval when quasi-linear mirror mode structures were detected by magnetic field and plasma measurements as observed by the NASA/Mars Atmosphere and Volatile EvolutioN spacecraft. We employ ion and electron spectrometers in tandem to support the magnetic field measurements and confirm that the signatures are indeed mirror modes. Wedged against the magnetic pile-up boundary, the low-frequency signatures last on average ~10 s with corresponding sizes of the order of 15–30 upstream solar wind proton thermal gyroradii, or 10–20 proton gyroradii in the immediate wake of the quasi-perpendicular bow shock. Their peak-to-peak amplitudes are of the order of 30–35 nT with respect to the background field, and appear as a mixture of dips and peaks, suggesting that they may have been at different stages in their evolution. Situated in a marginally stable plasma with β_(‖) ~ 1, we hypothesize that these so-called magnetic bottles, containing a relatively higher energy and denser ion population with respect to the background plasma, are formed upstream of the spacecraft behind the quasi-perpendicular shock. These signatures are very reminiscent of magnetic bottles found at other unmagnetized objects such as Venus and comets, also interpreted as mirror modes. Our case study constitutes the first unmistakable identification and characterization of mirror modes at Mars from the joint points of view of magnetic field, electron and ion measurements. Up until now, the lack of high-temporal resolution plasma measurements has prevented such an in-depth study.
机译:我们提出一个时间间隔的深入分析当准线性镜像模式结构检测到磁场和等离子体测量由NASA /观察到火星大气与挥发物演化的宇宙飞船。采用离子和电子光谱仪磁场测量和支持确认签名确实是镜子模式。去年在边界,低频签名平均~ 10 s和相应大小的15 - 30上游太阳风质子热gyroradii或10 - 20的质子gyroradii立即quasi-perpendicular后弓冲击。订单进行30到35元的背景领域,表现为下降和山峰,这表明它们可能是不同的在他们的进化阶段。略微稳定等离子体与β_(为)~ 1,我们假设这些所谓的磁性瓶,包含一个相对更高的能源和人口密集的离子对背景等离子体形成的上游飞船背后的quasi-perpendicular冲击。这些签名非常让人想起磁瓶等垂直入射的对象金星和彗星,也解释为镜模式。明显的标识和描述镜像模式在火星的接合点的磁场,电子和离子测量。high-temporal解决等离子体测量阻止这样的深入研究。

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