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A preliminary global map of the vector lunar crustal magnetic field based on Lunar Prospector magnetometer data

机译:基于Lunar Prospector磁力计数据的矢量月球地壳磁场的初步全局图

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Previous processing of the Lunar Prospector magnetometer (LP-MAG) data has yielded ~40% coverage of the Moon. Here, new mapping of the low-altitude LP-MAG data is reported with the goal of producing the first global vector map of the lunar crustal magnetic field. By considering all data regardless of the external plasma environment and using less restrictive editing criteria, 2360 partial and complete passes have been identified that can be used to investigate the lunar crustal magnetic anomalies. The cleanest global coverage is provided using 329 low-altitude nightside and terminator passes. An inverse power method has been used to continue the final mapping data to constant altitude. Using the 329 optimal passes, global maps of the lunar crustal magnetic field are constructed at 30 and 40 km. Consistent with previous studies: (1) the largest concentrations of anomalies are mapped antipodal to the Crisium, Serenitatis, Imbrium, and Orientale basins and (2) isolated anomalies at Reiner Gamma, Rima Sirsalis, Descartes, and Airy are mapped. Anomalies previously unmapped by the LP-MAG experiment include (1) isolated anomalies near the craters Abel and Hartwig, (2) weak magnetization within the Nectarian-aged Crisium and Moscoviense basins, and (3) a relatively weak anomaly in an area dominated by crater chains associated with the formation of Nectaris. Future work with the new low-altitude data set is discussed and will include determining whether the lunar anomalies are capable of deflecting the solar wind and investigating directions of magnetization to evaluate a possible former core dynamo.
机译:对月球勘探者磁力计(LP-MAG)数据的先前处理产生了约40%的月球覆盖率。在此,报告了低空LP-MAG数据的新映射,目的是生成月球地壳磁场的第一个全局矢量图。通过考虑所有数据,而不考虑外部等离子体环境,并且使用了较少限制的编辑标准,已经确定了2360次局部和完全通过,可用于调查月球地壳磁异常。使用329个低空夜床和终结者通行证,可以提供最干净的全球覆盖。逆功率法已用于将最终映射数据继续到恒定高度。使用329次最佳通过,在30公里和40公里处绘制了月球地壳磁场的全局图。与以前的研究一致:(1)将最大浓度的异常映射为克里斯蒂姆,塞雷尼蒂斯,Imbrium和Orientale盆地的对映体,以及(2)绘制了Reiner Gamma,Rima Sirsalis,笛卡尔和Airy的孤立异常。先前通过LP-MAG实验未映射的异常包括:(1)阿贝尔和哈特维格火山口附近的孤立异常;(2)纳粹时期的克里斯蒂姆盆地和莫斯科维塞盆地内的弱磁化作用;以及(3)在一个以占主导地位的区域内相对较弱的异常与油桃形成有关的火山口链。讨论了使用新的低空数据集的未来工作,并将包括确定月球异常是否能够偏转太阳风,并研究磁化方向以评估可能的前核心发电机。

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