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Raman spectroscopy, assisted by X‐ray fluorescence and laser‐induced breakdown spectroscopy, to characterise original and altered mineral phases in the NWA 2975 Martian shergottite.

Authors :
Población, Iratxe
Torre‐Fdez, Imanol
Aramendia, Julene
López‐Reyes, Guillermo
Cabalín, Luisa M.
Madariaga, Juan Manuel
Rull, Fernando
Laserna, Javier J.
Carrizo, Daniel
Martínez‐Frías, Jesús
Belenguer, Tomás
Taravillo, Mercedes
Dell'Aglio, Marcella
De Giacomo, Alessandro
Huidobro, Jennifer
Manrique, Jose Antonio
Delgado, Tomás
Arana, Gorka
Castro, Kepa
Veneranda, Marco
Source :
Journal of Raman Spectroscopy; Nov2023, Vol. 54 Issue 11, p1233-1247, 15p
Publication Year :
2023

Abstract

A fragment of the NWA 2975 Martian meteorite, an enriched basaltic shergottite, was analysed to complete its geochemical characterisation performed 10 years ago. By this means, the feasibility of the employed techniques in a combined way for present and future space exploration missions can be tested. For this aim, Raman spectroscopy was used supported by micro energy dispersive X‐ray fluorescence (μ‐EDXRF) and laser‐induced breakdown spectroscopy (LIBS) for an accurate interpretation of molecular and elemental results. Raman spectroscopy results from two setups, InVia from Renishaw and RLS Simulator, were compared. The major minerals detected by Raman spectroscopy were pyroxenes (mainly augite, pigeonite and enstatite) and plagioclases (mainly shocked maskelynite). Raman spectroscopy allowed defining different metal compositions for these main minerals based on the secondary Raman spectroscopy bands in the 200–500 cm−1 region. In addition, other minerals were found such as merrillite, as well as pyrrhotite and apatite, in several veins and cracks of the meteorite, in agreement with the initial report by the Meteoritical Bulletin. Moreover, it should be highlighted that coesite was found for the very first time in this meteorite. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03770486
Volume :
54
Issue :
11
Database :
Complementary Index
Journal :
Journal of Raman Spectroscopy
Publication Type :
Academic Journal
Accession number :
173777696
Full Text :
https://doi.org/10.1002/jrs.6560