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Determining the absolute abundances of natural radioactive elements on the lunar surface by the kaguya gamma-ray spectrometer

机译:用kaguya伽马射线能谱仪测定月球表面天然放射性元素的绝对丰度

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The Kaguya gamma-ray spectrometer (KGRS) has great potential to precisely determine the absolute abundances of natural radioactive elements K, Th and U on the lunar surface because of its excellent spectroscopic performance. In order to achieve the best performance of the KGRS, it is important to know the spatial response function (SRF) that describes the directional sensitivity of the KGRS. The SRF is derived by a series of Monte Carlo simulations of gamma-ray transport in the sensor of the KGRS using the full-fledged simulation model of the KGRS, and is studied in detail. In this paper, the method for deriving absolute abundance of natural radioactive elements based on the SRF is described for the analysis of KGRS data, which is also applicable to any gamma-ray remote sensings. In the preliminary analysis of KGRS data, we determined the absolute abundances of K and Th on the lunar surface without using any previous knowledge of chemical information gained from Apollo samples, lunar meteorites and/or previous lunar remote sensings. The results are compared with the previous measurements and the difference and the correspondence are discussed. Future detailed analysis of KGRS data will provide new and more precise maps of K, Th and U on the lunar surface.
机译:Kaguya伽马射线光谱仪(KGRS)具有出色的光谱性能,具有很大的潜力来精确确定月球表面天然放射性元素K,Th和U的绝对丰度。为了获得KGRS的最佳性能,重要的是要了解描述KGRS方向灵敏度的空间响应函数(SRF)。 SRF是通过使用KGRS的完整模拟模型,通过一系列KGRS传感器中的伽马射线传输的蒙特卡罗模拟得出的,并进行了详细研究。在本文中,描述了基于SRF的自然放射性元素绝对丰度的推导方法,用于KGRS数据分析,该方法也适用于任何伽马射线遥感。在KGRS数据的初步分析中,我们无需使用从阿波罗样本,月球陨石和/或以前的月球遥感获得的化学信息的任何先前知识,即可确定月球表面上K和Th的绝对丰度。将结果与先前的测量结果进行比较,并讨论差异和对应关系。 KGRS数据的未来详细分析将提供月球表面K,Th和U的新的和更精确的地图。

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