利用VSWIR微成像光谱研究HED陨石的矿物多样性

A. Fraeman, B. Ehlmann, G. Northwood-Smith, Yang Liu, M. Wadhwa, R. Greenberger
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引用次数: 2

摘要

利用VSWIR微成像光谱技术,在80-μm/pixel空间尺度上研究了HED陨石的光谱多样性。我们在这项工作中的目标是探索微成像VSWIR光谱的新兴能力,并有助于理解HED套件的岩石学多样性和灶神星的演化。结合人工和自动高光谱分类技术,我们根据VSWIR吸收识别出四大类材料,包括辉石、橄榄石、含铁长石和含玻璃/无特征材料。结果表明,微成像光谱是一种快速、无损地表征陨石样品成分变化的有效方法,可以为后续研究定位稀有相。未来的工作将包括结合SEM/EDS结果来量化光谱变化的来源,并将观测结果置于灶神星分化和演化的更广泛的地质框架内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using VSWIR microimaging spectroscopy to explore the mineralogical diversity of HED meteorites
We use VSWIR microimaging spectroscopy to survey the spectral diversity of HED meteorites at 80-μm/pixel spatial scale. Our goal in this work is both to explore the emerging capabilities of microimaging VSWIR spectroscopy and to contribute to understanding the petrologic diversity of the HED suite and the evolution of Vesta. Using a combination of manual and automated hyperspectral classification techniques, we identify four major classes of materials based on VSWIR absorptions that include pyroxene, olivine, Fe-bearing feldspars, and glass-bearing/featureless materials. Results show microimaging spectroscopy is an effective method for rapidly and non-destructively characterizing small compositional variations of meteorite samples and for locating rare phases for possible follow-up investigation. Future work will include incorporating SEM/EDS results to quantify sources of spectral variability and placing observations within a broader geologic framework of the differentiation and evolution of Vesta.
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