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首页> 外文期刊>Journal of geophysical research. Planets >Global-scale externalmagnetic fields at Mars measured at satellite altitude
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Global-scale externalmagnetic fields at Mars measured at satellite altitude

机译:在卫星高度测量的火星的全球尺度外部磁场

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摘要

The Martian magnetic field is unique among those of the terrestrial planets. It is the net result of the interaction of the solar wind and the interplanetary magnetic field (IMF) with crustal remnant magnetization and a planetary ionosphere. Internal fields of crustal origin have been the subject of extensive studies; the focus of our work is identification and characterization of contributions from external magnetic fields using the Mars Global Surveyor (MGS) vector magnetic field data. We investigate the magnitude, average spatial structure, and temporal variability of the external magnetic field at MGS mapping altitude of 400 km by first subtracting the expected contributions from crustal fields using existing global crustal field models.We identify periodicities and spatial structure in the field related to the day-night cycle and Carrington rotations, as well as variations corresponding to an annual cycle and short aperiodic signals. We suggest that ionospheric currents driven by upper atmosphere winds contribute to the observed zonal structure in the daily variation in the external magnetic field. Finally, we discuss the potential for magnetic sounding studies using time-varying external fields and surface magnetometry measurements from the InSight mission to be launched in 2018.
机译:火星磁场在陆地行星中是独一无二的。它是太阳风与地壳残留磁化和行星电离层相互作用的净结果。地壳起源的内部领域一直是广泛研究的主题。我们工作的重点是使用火星全球测量师(MGS)向量磁场数据来识别和表征外部磁场的贡献。我们通过首先使用现有的全球地壳场模型从地壳场上减去预期的贡献,研究了MGS映射高度的外部磁场在MGS映射高度上的大小,平均空间结构和时间变化。我们确定与该场相关的周期性和空间结构。到昼夜周期和卡林顿旋转,以及对应于年度周期和短周期信号的变化。我们建议,由高气风驱动的电离层电流有助于外部磁场的每日变化中观察到的纬向结构。最后,我们讨论了使用时间变化的外场和从2018年启动的洞察任务中进行的磁性声音研究的潜力。

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