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首页> 外文期刊>Journal of geophysical research. Planets >Global spherical harmonic models of the internal magnetic field of the Moon based on sequential and coestimation approaches
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Global spherical harmonic models of the internal magnetic field of the Moon based on sequential and coestimation approaches

机译:基于顺序和协估计方法的月球内部磁场的全局球谐模型

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摘要

Three new models of the global internal magnetic field of the Moon based on Lunar Prospector (LP) fluxgate magnetometer observations are developed for use in understanding the origin of the Moon’s crustal magnetic field and for modeling its interaction with the solar wind. The models are at spherical harmonic degree 170, corresponding to 64 km wavelength resolution, from 30 km mean altitude LP observations. Coverage is complete except for a few areas near each pole. Original signal amplitudes are best preserved in the sequential approach map, whereas feature recognition is superior in the coestimation and harmonic wave number correlation maps. Spherical harmonic degrees less than 15, corresponding to 666 km wavelength, are largely absent from the Moon’s internal magnetic field. We interpret this bound in terms of the Moon’s impact history. A derived magnetization map suggests magnetizations may locally exceed 0.2 A/m in the lunar crust at the survey resolution if the magnetic crust is as thick as 40 km.
机译:根据月球观测器(LP)磁通门磁强计观测结果,开发了三种新的月球全球内部磁场模型,用于了解月球地壳磁场的起源以及模拟其与太阳风的相互作用。这些模型的球谐度为170,对应于30 km平均高度LP观测值的64 km波长分辨率。除每个极点附近的几个区域外,覆盖范围已完成。原始信号幅度最好保存在顺序进近图中,而特征识别在共估计和谐波数相关图中则更好。月球内部磁场基本上不存在小于15的球谐度,相当于666公里的波长。我们根据月球的撞击历史来解释这一界限。导出的磁化图表明,如果地壳厚达40 km,则在勘测分辨率下月壳中的磁化强度可能会局部超过0.2 A / m。

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