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Laser induced breakdown spectroscopy library for the Martian environment
Authors:A Cousin  O Forni  S Maurice  O Gasnault  C Fabre  V Sautter  RC Wiens  J Mazoyer
Institution:1. Université de Toulouse, UPS (Université Paul Sabatier)-OMP (Observatoire Midi Pyrénées), IRAP (Institut de Recherche en Astrophysique et Planétologie), Toulouse, France;2. CNRS (Centre National de la Recherche Scientifique), IRAP, 9 Av. colonel Roche, BP 44346, F-31028 Toulouse cedex 4, France;3. G2R, Nancy Université, France;4. MNHN, Paris, France;5. Los Alamos National Laboratory, Los Alamos, NM, USA
Abstract:The NASA Mars Science Laboratory rover will carry the first Laser Induced Breakdown Spectroscopy experiment in space: ChemCam. We have developed a laboratory model which mimics ChemCam's main characteristics. We used a set of target samples relevant to Mars geochemistry, and we recorded individual spectra. We propose a data reduction scheme for Laser Induced Breakdown Spectroscopy data incorporating de-noising, continuum removal, and peak fitting. Known effects of the Martian atmosphere are confirmed with our experiment: better Signal-to-Noise Ratio on Mars compared to Earth, narrower peak width, and essentially no self-absorption. The wavelength shift of emission lines from air to Mars pressure is discussed. The National Institute of Standards and Technology vacuum database is used for wavelength calibration and to identify the elemental lines. Our Martian database contains 1336 lines for 32 elements: H, Li, Be, B, C, N, O, F, Na, Mg, Al, Si, P, S, Cl, K, Ar, Ca, Ti, V, Cr, Mn, Fe, Ni, Cu, Zn, As, Rb, Sr, Cs, Ba, and Pb. It is a subset of the National Institute of Standards and Technology database to be used for Martian geochemistry. Finally, synthetic spectra can be built from the Martian database. Correlation calculations help to distinguish between elements in case of uncertainty. This work is used to create tools and support data for the interpretation of ChemCam results.
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