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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Near-Infrared (NIR) Raman Spectroscopy of Precambrian Carbonate Stromatolites with Post-Depositional Organic Inclusions
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Near-Infrared (NIR) Raman Spectroscopy of Precambrian Carbonate Stromatolites with Post-Depositional Organic Inclusions

机译:沉积后有机包裹体的前寒武纪碳酸盐气辉石的近红外(NIR)拉曼光谱

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摘要

Raman spectroscopy has promising potential for future Mars missions as a non-contact detection technique for characterizing organic material and mineralogy. Such a capability will be useful for selecting samples for detailed analysis on a rover and for selecting samples for return to Earth. Stromatolites are important evidence for the earliest life on Earth and are promising targets for Mars investigations. Although constructed by microorganisms, stromatolites are organo-sedimentary structures that can be large enough to be discovered and investigated by a Mars rover. In this paper, we report the Raman spectroscopic investigations of the carbonate mineralogy and organic layering in a Precambrian (approx1.5 Gyr old) stromatolite from the Crystal Spring Formation of Southern California. Ultraviolet (UV: 266 nm), visible (514 nm, 633 nm), and near-infrared (NIR: 785 nm, 1064 nm) Raman spectra are presented. We conclude that 1064 nm excitation is the optimal excitation wavelength for avoiding intrinsic fluorescence and detecting organic carbon within the carbonate matrix. Our results confirm that NIR Raman spectroscopy has important applications for future Mars missions.
机译:拉曼光谱法作为一种非接触式探测技术,可用于表征有机材料和矿物学,具有未来火星探测任务的潜力。这种功能对于选择样品进行流动站的详细分析以及选择返回地球的样品将很有用。透脱石是地球上最早生命的重要证据,也是火星研究的有希望的目标。尽管叠层石是由微生物构成的,但它们是有机沉积的结构,其结构可能足以被火星探测车发现和研究。在本文中,我们报告了来自南加州水晶泉组的前寒武纪(约1.5吉尔年代)叠层石中碳酸盐矿物学和有机层的拉曼光谱研究。呈现了紫外线(UV:266 nm),可见光(514 nm,633 nm)和近红外(NIR:785 nm,1064 nm)拉曼光谱。我们得出的结论是1064 nm激发是避免固有荧光并检测碳酸盐基质中有机碳的最佳激发波长。我们的结果证实,近红外拉曼光谱仪在未来的火星飞行任务中具有重要的应用。

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