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ExoMars Raman Laser Spectrometer: A Tool to Semiquantify the Serpentinization Degree of Olivine-Rich Rocks on Mars

机译:exoMars拉曼激光光谱仪:将富含橄榄石的岩石的蛇形化程度进行半核化的工具

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摘要

We evaluated the effectiveness of the ExoMars Raman laser spectrometer (RLS) to determine the degree of serpentinization of olivine-rich units on Mars. We selected terrestrial analogs of martian ultramafic rocks from the Leka Ophiolite Complex (LOC) and analyzed them with both laboratory and flight-like analytical instruments. We first studied the mineralogical composition of the samples (mostly olivine and serpentine) with state-of-the-art diffractometric (X-ray diffractometry [XRD]) and spectroscopic (Raman, near-infrared spectroscopy [NIR]) laboratory systems. We compared these results with those obtained using our RLS ExoMars Simulator. Our work shows that the RLS ExoMars Simulator successfully identified all major phases. Moreover, when emulating the automatic operating mode of the flight instrument, the RLS ExoMars Simulator also detected several minor compounds (pyroxene and brucite), some of which were not observed by NIR and XRD (e.g., calcite). Thereafter, we produced RLS-dedicated calibration curves (R-2 between 0.9993 and 0.9995 with an uncertainty between +/- 3.0% and +/- 5.2% with a confidence interval of 95%) to estimate the relative content of olivine and serpentine in the samples. Our results show that RLS can be very effective in identifying serpentine, a scientific target of primary importance for the potential detection of biosignatures on Mars-the main objective of the ExoMars rover mission.
机译:我们评估了exoMars拉曼激光光谱仪(RLS)的有效性,以确定火星上富含橄榄石的单位的蛇形化程度。我们从雷卡奥替斯科特(LOC)中选择了火星Ultramafic Rocks的地面类似物,并用实验室和飞行的分析仪器分析了它们。我们首先将样品的矿物学组成与最新的衍射量(X射线衍射率π)和光谱(拉曼,近红外光谱[NIR])实验室系统进行了最新的衍射率(橄榄石和蛇形)的矿物学组成。我们将这些结果与使用我们的RLS Exomars模拟器获得的结果进行了比较。我们的工作表明,RLS exoMars模拟器成功地确定了所有主要阶段。此外,在模拟飞行仪器的自动操作模式时,RLS exoMars模拟器也检测到几种次要化合物(辉石和布鲁氏岩),其中一些未被NIR和XRD(例如,方解石)观察到。此后,我们生产的RLS专用校准曲线(R-2之间,在0.9993和0.9995之间,不确定度在+/- 3.0%和+/- 5.2%之间,置信区间为95%),以估算橄榄石和蛇形的相对含量样品。我们的研究结果表明,RLS可以非常有效地识别蛇纹石,这是对火星生物炎的潜在重视的大小重要性的科学目标 - 展开流动站使命的主要目标。

著录项

  • 来源
    《Astrobiology》 |2021年第3期|307-322|共16页
  • 作者单位

    Univ Valladolid Dept Condensed Matter Phys Crystallog & Mineral Ave Francisco Valles 8 Valladolid 47151 Spain;

    Univ Valladolid Dept Condensed Matter Phys Crystallog & Mineral Ave Francisco Valles 8 Valladolid 47151 Spain;

    Univ Valladolid Dept Condensed Matter Phys Crystallog & Mineral Ave Francisco Valles 8 Valladolid 47151 Spain;

    Univ Oslo Ctr Earth Evolut & Dynam Dept Geosci Oslo Norway;

    Univ Valladolid Dept Condensed Matter Phys Crystallog & Mineral Ave Francisco Valles 8 Valladolid 47151 Spain;

    Univ Valladolid Dept Condensed Matter Phys Crystallog & Mineral Ave Francisco Valles 8 Valladolid 47151 Spain;

    Univ Paris Sud CNRS Inst Astrophys Spatiale Orsay France;

    York Univ Dept Earth & Space Sci & Engn Toronto ON Canada;

    Inst Nacl Tecn Aerosp INTA Dept Space Programs Madrid Spain;

    Univ Valladolid Dept Condensed Matter Phys Crystallog & Mineral Ave Francisco Valles 8 Valladolid 47151 Spain;

    Univ Paris Sud CNRS Inst Astrophys Spatiale Orsay France;

    Univ Oslo Ctr Earth Evolut & Dynam Dept Geosci Oslo Norway;

    Univ Oslo Ctr Earth Evolut & Dynam Dept Geosci Oslo Norway;

    ESA ESTEC Noordwijk Netherlands;

    Univ Valladolid Dept Condensed Matter Phys Crystallog & Mineral Ave Francisco Valles 8 Valladolid 47151 Spain;

  • 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

    ExoMars; Raman Laser Spectrometer (RLS); Semi-quantification; Olivine serpentinization; Mars;

    机译:外致;拉曼激光光谱仪(RLS);半量化;橄榄石蛇形化;火星;
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