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Deriving the absolute reflectance of lunar surface using SELENE (Kaguya) multiband imager data

机译:使用SELENE(Kaguya)多波段成像仪数据推导月球表面的绝对反射率

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The absolute reflectance of the Moon has long been debated because it has been suggested (Hillier et al. in Icarus 151:205-225, 1999) that there is a large discrepancy between the absolute reflectance of the Moon derived from Earth-based telescopic data and that derived from remote-sensing data which are calibrated using laboratory-measured reflectance spectra of Apollo 16 bulk soil 62231. Here we derive the absolute reflectance of the lunar surface using spectral data newly acquired by SELENE (Kaguya) Multiband Imager and Spectral Profiler. The results indicate that the reflectance of the Apollo 16 standard site, which has been widely used as an optical standard in previous Earth-based telescopic and remote-sensing observations derived by Multiband Imager, is 47% at 415 nm and 67% to 76% at 750 to 1550 nm of the value for the Apollo 16 mature soil measured in an Earth-based laboratory. The data also suggest that roughly 60% of the difference is caused by the difference in soil composition and/or maturity between the 62231 sampling site and the Apollo 16 standard site and that the remaining 40% difference can be explained by the difference between the compaction states of the laboratory and the actual lunar surface. Consideration of the compaction states of the surface soil demonstrates its importance for understanding the spectral characteristics of the lunar surface. We also explain and evaluate data analysis procedures to derive reflectance from Multiband Imager data.
机译:月亮的绝对反射率长期以来一直受到争论,因为有人提出(Hillier等人,在Icarus 151:205-225,1999年),基于地球的望远镜数据得出的月亮的绝对反射率之间存在很大差异。以及从使用实验室测得的Apollo 16大块土壤62231的反射光谱校准的遥感数据中得出的。这里,我们使用SELENE(Kaguya)多波段成像仪和光谱分析仪新获得的光谱数据得出月球表面的绝对反射率。结果表明,阿波罗16号标准站点的反射率在415 nm处为47%,在以前的多波段成像仪进行的基于地球的望远镜和遥感观测中被广泛用作光学标准,其反射率在47%和67%至76%之间在地球实验室中测得的Apollo 16成熟土壤的750nm至1550nm处。数据还表明,大约60%的差异是由62231采样点与Apollo 16标准位点之间的土壤成分和/或成熟度的差异引起的,其余40%的差异可以用压实度之间的差异来解释实验室状态和实际月球表面。对表层土壤压实状态的考虑表明其对于理解月球表面光谱特征的重要性。我们还将解释和评估数据分析程序,以从Multiband Imager数据中得出反射率。

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