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Time-resolved stand-off UV-Raman spectroscopy for...
Journal article

Time-resolved stand-off UV-Raman spectroscopy for planetary exploration

Abstract

The exploration of Mars, Europa and Enceladus has provided evidence that support the existence of present or past potentially habitable environments, which may shelter signatures of extinct or extant life. A search for further evidence for habitability or for life requires the development of sophisticated instruments and techniques that enable detailed investigations of locations, which are of great interest to planetary scientists and astrobiologists. Raman spectroscopy is a powerful and versatile technique; a rover based Raman Laser Spectrometer (RLS) operating at 532nm excitation wavelength has been selected for the 2018 ExoMars mission. In this study, we demonstrate the feasibility of the utilisation of a time-resolved stand-off UV-Raman prototype for the detection and identification of pure organics, organics mixed in a quartz matrix and minerals that have been selected based on their potential relevance to astrobiology and planetary exploration. The samples of organics (β-carotene, l-ascorbic acid, thiamine hydrochloride, l-alanine, l-serine, thymine), carbonates (calcite, dolomite), sulfates (gypsum), silicates (quartz), and natural rock (an altered meta-volcanic rock featuring quartz inclusions) were analyzed at a distance of 6m using a 355nm excitation source and a gated intensified charged-coupled device (ICCD) as the detector. We were able to obtain spectra with clear Raman signals enabling unequivocal identification of all selected samples. We assert for the first time, that such an instrument can effectively identify minerals and a wide range of organics that may serve as geo- and biomarkers thus showing great potential for the exploration of planets and astrobiology.

Authors

Skulinova M; Lefebvre C; Sobron P; Eshelman E; Daly M; Gravel J-F; Cormier J-F; Châteauneuf F; Slater G; Zheng W

Journal

Planetary and Space Science, Vol. 92, , pp. 88–100

Publisher

Elsevier

Publication Date

January 1, 2014

DOI

10.1016/j.pss.2014.01.010

ISSN

0032-0633

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