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Geochemistry of the lunar highlands as revealed by measurements of thermal neutrons

机译:热中子的测量揭示了月球高地的地球化学

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摘要

Thermal neutron emissions from the lunar surface provide a direct measure of bulk elemental composition that can be used to constrain the chemical properties of near‐surface (depth <1 m) lunar materials. We present a new calibration of the Lunar Prospector thermal neutron map, providing a direct link between measured count rates and bulk elemental composition. The data are used to examine the chemical and mineralogical composition of the lunar surface, with an emphasis on constraining the plagioclase concentration across the highlands. We observe that the regions of lowest neutron absorption, which correspond to estimated plagioclase concentrations of >85%, are generally associated with large impact basins and are colocated with clusters of nearly pure plagioclase identified with spectral reflectance data.
机译:月球表面的热中子辐射提供了直接测量块状元素组成的方法,可用于约束近地表(深度<1μm)月球材料的化学性质。我们提出了对Lunar Prospector热中子图的新校准,提供了测量计数率与整体元素组成之间的直接联系。这些数据用于检查月球表面的化学和矿物组成,重点是限制整个高地的斜长石浓度。我们观察到中子吸收最低的区域,对应于估计的斜长石浓度> 85%,通常与大型撞击盆地相关,并与通过光谱反射率数据鉴定出的近乎纯斜长石簇聚集在一起。

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