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Extracting Olivine (Fo-Fa) Compositions from Raman Spectral Peak Positions

机译:从拉曼光谱峰位置提取橄榄石(Fo-Fa)成分

摘要

Olivine and pyroxene are two major basaltic minerals that have been identified at Gusev Crater and Meridiani Planum by the Mars Exploration Rovers. Full petrologic characterization of a sample (rock or soil), however, requires determining the range of mineral compositions, extent of zoning, range of grain sizes, mineral associations, presence of xenocrysts, etc. Information of this sort will aid the interpretation of sample crystallization and differentiation histories and help discriminate between lithologies. In Raman spectroscopic experiments, minerals are identified by their spectral patterns and mineral compositions can be inferred from the peak positions. Instruments currently in use or slated for impending surface exploration missions provide only average elemental compositions for relatively large rock or soil targets or bulk mineral analysis. No techniques currently in use or scheduled for flight can characterize both structure and composition of individual mineral grains, in-situ, like the Mars Microbeam Raman Spectrometer (MMRS). The MMRS is designed to take 100 spectra along a 1 cm linear traverse on the surface of a sample, with contributions from one or a few mineral phases per spectrum. We presented a method to extract structural and compositional information from the Raman spectra of quadrilateral pyroxenes. The pyroxene calibration was applied to a Raman spectroscopic study of Martian meteorite EETA79001 along with a preliminary olivine calibration, where we demonstrated the capability to discriminate related lithologies using Raman point counts. This paper presents an improved olivine calibration that will further aid sample characterization and the study of alteration processes.
机译:橄榄石和辉石是火星探测漫游者在Gusev Crater和Meridiani Planum鉴定出的两种主要的玄武岩矿物。但是,样品(岩石或土壤)的完整岩石学表征需要确定矿物成分的范围,分区范围,粒度范围,矿物缔合,异晶相的存在等。此类信息将有助于样品的解释。结晶和分化的历史,并有助于区分岩性。在拉曼光谱实验中,通过矿物的光谱图谱鉴定矿物,并可以从峰位推断出矿物成分。当前用于或即将进行地面勘探任务的仪器仅能为相对较大的岩石或土壤目标或大量矿物分析提供平均元素组成。当前使用或计划飞行的任何技术都无法像Mars Microbeam拉曼光谱仪(MMRS)一样就地表征单个矿粒的结构和成分。 MMRS旨在沿样品表面上1 cm的线性遍历采集100个光谱,每个光谱中有一个或几个矿相的贡献。我们提出了一种从四边形辉石的拉曼光谱中提取结构和成分信息的方法。辉石校准被用于火星陨石EETA79001的拉曼光谱研究以及初步的橄榄石校准,其中我们展示了使用拉曼点计数来区分相关岩性的能力。本文提出了一种改进的橄榄石标定,将进一步帮助样品表征和蚀变过程的研究。

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