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Spectroscoplc requirements for Raman Instrumentation on a planetary landers potential for the remote detection of biosagnatures on Nars

机译:光谱仪对行星着陆器上拉曼仪器的需求,以用于远程探测纳尔斯上的生物指征

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摘要

The special characteristics of Raman spectroscopy (relative insensitivity to water, nondestructive detection, sensitivity to bio- and geosignatures, molecular structural composition information, etc.) together with the development of miniaturized Raman spectrometers make the consideration of this technique for future robotic landers on planetary surfaces, particularly Mars, a very interesting option. The development of light and rugged Raman spectrometers limits the possible scope of the instrumentation which has particular importance in the recognition of biomolecular and mineral signatures. In this work, we evaluate the spectral resolution and scan time parameters and the effect that they have on the Raman spectra of extremophilic biomolecules, together with the wavenumber ranges which are critical for the detection of life signals. This is of vital relevance for the design of miniaturized Raman spectrometer systems. From our results, we conclude that for extraterrestrial biological signatures unambiguous Raman spectral identification provided with a minimum of 16 cm~(-1) spectral resolution is required for the most significant biosignature wavenumber range in the 1700-700 cm~(-1) region.
机译:拉曼光谱的特殊特征(对水相对不敏感,无损检测,对生物特征和地理特征的敏感性,分子结构组成信息等)以及小型化拉曼光谱仪的发展使这项技术成为未来行星上机器人着陆器的考虑因素表面,尤其是火星,是非常有趣的选择。坚固耐用的拉曼光谱仪的发展限制了仪器的可能范围,这在识别生物分子和矿物特征方面尤为重要。在这项工作中,我们评估了光谱分辨率和扫描时间参数,以及它们对极端微生物分子的拉曼光谱的影响,以及对检测生命信号至关重要的波数范围。这对于小型化拉曼光谱仪系统的设计至关重要。根据我们的结果,我们得出结论,对于外星生物特征,在1700-700 cm〜(-1)区域内最重要的生物签名波数范围内,至少要有16 cm〜(-1)的光谱分辨率才能进行清晰的拉曼光谱识别。 。

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