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Raman spectroscopy on Mars: identification of geological and bio-geological signatures in Martian analogues using miniaturized Raman spectrometers

机译:火星上的拉曼光谱:使用小型拉曼光谱仪鉴定火星类似物中的地质和生物地质特征

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摘要

The first Raman spectrometers to be used for in situ analysis of planetary material will be launched as part of powerful, rover-based analytical laboratories within the next 6 years. There are a number of significant challenges associated with building spectrometers for space applications, including limited volume, power and mass budgets, the need to operate in harsh environments and the need to operate independently and intelligently for long periods of time (due to communication limitations). Here, we give an overview of the technical capabilities of the Raman instruments planned for future planetary missions and give a review of the preparatory work being pursued to ensure that such instruments are operated successfully and optimally. This includes analysis of extremophile samples containing pigments associated with biological processes, synthetic materials which incorporate biological material within a mineral matrix, planetary analogues containing low levels of reduced carbon and samples coated with desert varnish that incorporate both geo-markers and biomarkers.We discuss the scientific importance of each sample type and the challenges using portable/flight-prototype instrumentation. We also report on technical development work undertaken to enable the next generation of Raman instruments to reach higher levels of sensitivity and operational efficiency.
机译:在接下来的6年中,将作为基于流动站的强大分析实验室的一部分,推出首批用于行星材料现场分析的拉曼光谱仪。与用于空间应用的建筑光谱仪相关的许多重大挑战,包括有限的体积,功率和质量预算,在恶劣环境下运行的需求以及长时间独立和智能运行的需求(由于通信限制) 。在此,我们概述了为未来的行星飞行计划的拉曼仪器的技术能力,并对正在进行的准备工作进行了回顾,以确保此类仪器能够成功且最佳地运行。这包括分析含有与生物过程相关的颜料的极端微生物样品,将生物材料掺入矿物基质中的合成材料,含低量还原碳的行星类似物以及掺有地理标记和生物标记的沙漠清漆样品。每种样品类型的科学重要性以及使用便携式/飞行原型仪器的挑战。我们还报告了为使下一代拉曼仪器达到更高的灵敏度和运行效率水平而进行的技术开发工作。

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