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    Por favor, use este identificador para citar o enlazar este ítem:http://uvadoc.uva.es/handle/10324/46257

    Título
    Spectroscopic study of olivine-bearing rocks and its relevance to the ExoMars rover mission
    Autor
    Veneranda ., MarcoAutoridad UVA Orcid
    Manrique Martínez, José AntonioAutoridad UVA Orcid
    López Reyes, Guillermo EduardoAutoridad UVA Orcid
    Medina García, JesúsAutoridad UVA
    Torre Fernández, Imanol
    Castro, Kepa
    Madariaga Mota, Juan Manuel
    Lantz, Cateline
    Poulet, Francois
    Krzesińska, Agata M.
    Hellevang, Helge
    Werner, Stephanie C.
    Rull Pérez, FernandoAutoridad UVA
    Año del Documento
    2019
    Editorial
    Elsevier
    Descripción
    Producción Científica
    Documento Fuente
    Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2019, Vol. 223, 117360
    Abstract
    We present the compositional analysis of three terrestrial analogues of Martian olivine-bearing rocks derived from both laboratory and flight-derived analytical instruments. In the first step, state-of-the-art spectroscopic (XRF, NIR and Raman) and diffractometric (XRD) laboratory systems were complementary used. Besides providing a detailed mineralogical and geochemical characterization of the samples, results comparison shed light on the advantages ensured by the combined use of Raman and NIR techniques, being these the spectroscopic instruments that will soon deploy (2021) on Mars as part of the ExoMars/ESA rover payload. In order to extrapolate valuable indicators of the mineralogical data that could derive from the ExoMars/Raman Laser Spectrometer (RLS), laboratory results were then compared with the molecular data gathered through the RLS ExoMars Simulator. Beside correctly identifying all major phases (feldspar, pyroxene and olivine), the RLS ExoMars Simulator confirmed the presence of additional minor compounds (i.e. hematite and apatite) that were not detected by complementary techniques. Furthermore, concerning the in-depth study of olivine grains, the RLS ExoMars simulator was able to effectively detect the shifting of the characteristic double peak around 820 and 850 cm 1 , from which the Fe-Mg content of the analysed crystals can be extrapolated. Considering that olivine is one of the main mineral phases of the ExoMars landing site (Oxia Planum), this study suggests that the ExoMars/RLS system has the potential to provide detailed information about the elemental composition of olivine on Mars.
    Palabras Clave
    Spectroscopy; Raman; RLS; ExoMars; olivine;
    ISSN
    1386-1425
    Revisión por pares
    SI
    DOI
    10.1016/j.saa.2019.117360
    Patrocinador
    Proyecto MINECO Retos de la Sociedad. Ref. ESP2017-87690-C3-1-R
    Idioma
    eng
    URI
    http://uvadoc.uva.es/handle/10324/46257
    Tipo de versión
    info:eu-repo/semantics/submittedVersion
    Derechos
    openAccess
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    • DEP32 - Artículos de revista [284]
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