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Raman Spectroscopic Analysis of Geological and Biogeological Specimens of Relevance to the ExoMars Mission

机译:与ExoMars任务相关的地质和生物地质标本的拉曼光谱分析

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摘要

A novel miniaturized Raman spectrometer is scheduled to fly as part of the analytical instrumentation package on an ESA remote robotic lander in the ESA/Roscosmos ExoMars mission to search for evidence for extant or extinct life on Mars in 2018. The Raman spectrometer will be part of the first-pass analytical stage of the sampling procedure, following detailed surface examination by the PanCam scanning camera unit on the ExoMars rover vehicle. The requirements of the analytical protocol are stringent and critical; this study represents a laboratory blind interrogation of specimens that form a list of materials that are of relevance to martian exploration and at this stage simulates a test of current laboratory instrumentation to highlight the Raman technique strengths and possible weaknesses that may be encountered in practice on the martian surface and from which future studies could be formulated. In this preliminary exercise, some 10 samples that are considered terrestrial representatives of the mineralogy and possible biogeologically modified structures that may be identified on Mars have been examined with Raman spectroscopy, and conclusions have been drawn about the viability of the unambiguous spectral identification of biomolecular life signatures. It is concluded that the Raman spectroscopic technique does indeed demonstrate the capability to identify biomolecular signatures and the mineralogy in real-world terrestrial samples with a very high degree of success without any preconception being made about their origin and classification.
机译:新型微型拉曼光谱仪计划作为分析仪器包的一部分在ESA / Roscosmos ExoMars任务中的ESA远程机器人着陆器上飞行,以寻找2018年火星上已存在或已灭绝生命的证据。拉曼光谱仪将是在ExoMars漫游车上的PanCam扫描摄像头单元进行了详细的表面检查之后,采样过程的第一遍分析阶段就完成了。分析方案的要求非常严格和严格;这项研究代表了实验室对标本的盲目询问,这些标本形成了与火星探测有关的材料清单,并且在此阶段模拟了对当前实验室仪器的测试,以突出拉曼技术的优势和实践中可能遇到的弱点。火星表面,可以据此制定未来的研究。在这项初步工作中,使用拉曼光谱法研究了大约10个被认为是矿物学和可能在火星上鉴定出的生物地质修饰结构的地球代表的样品,并得出了明确鉴定生物分子生命的光谱的可行性的结论。签名。结论是,拉曼光谱技术确实证明了在现实世界中的陆地样品中鉴定生物分子特征和矿物学的能力,并且取得了很高的成功率,而对它们的起源和分类没有任何先入之见。

著录项

  • 来源
    《Astrobiology》 |2013年第6期|543-549|共7页
  • 作者单位

    Centre for Astrobiology and Extremophiles Research, School of Life Sciences, University of Bradford, Bradford, UK.,Department of Physics and Astronomy Space Research Centre University of Leicester University Road Leicester LEI 7RH UK;

    Department of Physics and Astronomy Space Research Centre University of Leicester University Road Leicester LEI 7RH UK;

    Department of Physics and Astronomy Space Research Centre University of Leicester University Road Leicester LEI 7RH UK;

    Department of Geology and Petroleum Geology, University of Aberdeen, Aberdeen, UK.;

    Institute of Geochemistry, Mineralogy and Mineral Resources, Faculty of Sciences, Charles University, Prague, Czech Republic.;

    Institute of Geochemistry, Mineralogy and Mineral Resources, Faculty of Sciences, Charles University, Prague, Czech Republic.;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biosignatures; Mars Exploration Rovers; Raman spectroscopy; Search for life (biosignatures); Planetary instrumentation;

    机译:生物签名;火星探测漫游者;拉曼光谱;寻找生命(生物签名);行星仪器;
  • 入库时间 2022-08-17 13:08:12

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