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Newer views of the Moon: Comparing spectra from Clementine and the Moon Mineralogy Mapper

机译:较新的月球视图:克莱门汀和月球矿物学制图仪的光谱比较

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摘要

The Moon Mineralogy Mapper (M~3) provided the first global hyperspectral data of the lunar surface in 85 bands from 460 to 2980 nm. The Clementine mission provided the first global multispectral maps the lunar surface in 11 spectral bands across the ultraviolet‐visible (UV‐VIS) and near‐infrared (NIR). In an effort to understand how M~3 improves our ability to analyze and interpret lunar data, we compare M~3 spectra with those from Clementine’s UV‐VIS and NIR cameras. The Clementine mission provided the first global multispectral maps the lunar surface in 11 spectral bands across the UV‐VIS and NIR. We have found that M3 reflectance values are lower across all wavelengths compared with albedos from both of Clementine’s UV‐VIS and NIR cameras. M~3 spectra show the Moon to be redder, that is, have a steeper continuum slope, than indicated by Clementine. The 1 μm absorption band depths may be comparable between the instruments, but Clementine data consistently exhibit shallower 2 μm band depths than M~3. Absorption band minimums are difficult to compare due to the significantly different spectral resolutions.
机译:月亮矿物制图仪(M〜3)在460至2980 nm的85个波段中提供了月球表面的首个全球高光谱数据。克莱门汀(Clementine)任务提供了第一个全球多光谱图,其跨紫外线可见(UV-VIS)和近红外(NIR)的11个光谱带中的月球表面。为了了解M〜3如何提高我们分析和解释月球数据的能力,我们将M〜3光谱与Clementine的UV-VIS和NIR摄像机的光谱进行了比较。克莱门汀(Clementine)任务提供了首个跨UV-VIS和NIR的11个光谱带中的月球表面的全球多光谱图。我们发现,与Clementine的UV-VIS和NIR摄像机的反照率相比,在所有波长下M3的反射率值都较低。 M〜3光谱显示月亮比克莱门汀所指示的更红,即具有更陡峭的连续斜率。仪器之间的1μm吸收带深度可能是可比的,但Clementine数据始终显示出比M〜3浅的2μm带深度。由于光谱分辨率明显不同,因此很难比较吸收峰的最小值。

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