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首页> 外文期刊>Geophysical Research Letters >Episodic detachment of Martian crustal magnetic fields leading to bulk atmospheric plasma escape
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Episodic detachment of Martian crustal magnetic fields leading to bulk atmospheric plasma escape

机译:火星地壳磁场的偶发脱离导致大量大气等离子体逸出

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We present an analysis of magnetic field and suprathermal electron measurements from the Mars Global Surveyor (MGS) spacecraft that reveals isolated magnetic structures filled with Martian atmospheric plasma located downstream from strong crustal magnetic fields with respect to the flowing solar wind. The structures are characterized by magnetic field enhancements and rotations characteristic of magnetic flux ropes, and characteristic ionospheric electron energy distributions with angular distributions distinct from surrounding regions. These observations indicate that significant amounts of atmosphere are intermittently being carried away from Mars by a bulk removal process: the top portions of crustal field loops are stretched through interaction with the solar wind and detach via magnetic reconnection. This process occurs frequently and may account for as much as 10% of the total present-day ion escape from Mars.
机译:我们提供了来自火星全球测量师(MGS)航天器的磁场和超热电子测量结果的分析,揭示了孤立的磁性结构,充满了火星大气等离子体,位于相对于流动的太阳风而言位于强地壳磁场下游。这些结构的特点是磁场增强和磁通量绳的旋转特性,以及电离层电子能量分布特征,其角分布与周围区域不同。这些观察表明,大量的清除过程间歇性地将大量的大气带离火星:地壳环的顶部通过与太阳风的相互作用而伸展,并通过磁重新连接而脱离。这个过程经常发生,可能占目前从火星逸出的离子总量的10%。

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