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首页> 外文期刊>Planetary and space science >Time-resolved detection of aromatic compounds on planetary surfaces by ultraviolet laser induced fluorescence and Raman spectroscopy
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Time-resolved detection of aromatic compounds on planetary surfaces by ultraviolet laser induced fluorescence and Raman spectroscopy

机译:紫外激光诱导荧光和拉曼光谱在时间分辨上检测行星表面上的芳香族化合物

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摘要

Raman spectroscopic instruments are highly capable in the search for organics on Mars due to the potential to perform rapid and nondestructive measurements on unprepared samples. Upcoming and future Raman instruments are likely to also incorporate laser-induced fluorescence (LIF) capabilities, which can be added for modest cost and complexity. We demonstrate that it is possible to obtain sub-ns fluorescence lifetime measurements of Mars-relevant organics and minerals if a fast time-gating capability is used with an intensified detector and a short ultraviolet laser pulse. This serves a primary purpose of discriminating mineral from short-lived (less than 10 ns) organic fluorescence, considered a potential biosignature. Additionally, lifetime measurements may assist in determining if more than one fluorescing species is present and provide information concerning the molecular structure as well as the local environment. Fast time-gating is also useful at longer visible or near-IR wavelengths, as this approach increases the sensitivity of the instrument to organic material by removing the majority of the fluorescence background from the Raman signal and reducing the effect of ambient light. Crown Copyright (C) 2015 Published by Elsevier Ltd. All rights reserved.
机译:拉曼光谱仪器具有在火星上搜索有机物的强大能力,因为它有可能对未制备的样品进行快速且无损的测量。即将到来的和未来的拉曼仪器也可能会合并激光诱导的荧光(LIF)功能,可以以适中的成本和复杂性添加这些功能。我们证明,如果在增强的探测器和短的紫外线激光脉冲下使用快速时间选通功能,则可以获得与火星有关的有机物和矿物的亚纳秒荧光寿命测量值。这主要目的是将矿物质与寿命短(小于10 ns)的有机荧光区分开,这被认为是潜在的生物特征。另外,寿命测量可以帮助确定是否存在一种以上的荧光物质,并提供有关分子结构以及局部环境的信息。快速时间选通在更长的可见光或近红外波长处也很有用,因为这种方法通过从拉曼信号中去除大部分荧光背景并减少环境光的影响,提高了仪器对有机材料的灵敏度。 Crown版权所有(C)2015,由Elsevier Ltd.发行。保留所有权利。

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