SuperCam Calibration Targets: Design and Development

Author:

Manrique J. A.ORCID,Lopez-Reyes G.,Cousin A.,Rull F.,Maurice S.,Wiens R. C.,Madsen M. B.,Madariaga J. M.,Gasnault O.,Aramendia J.,Arana G.,Beck P.,Bernard S.,Bernardi P.,Bernt M. H.,Berrocal A.,Beyssac O.,Caïs P.,Castro C.,Castro K.,Clegg S. M.,Cloutis E.,Dromart G.,Drouet C.,Dubois B.,Escribano D.,Fabre C.,Fernandez A.,Forni O.,Garcia-Baonza V.,Gontijo I.,Johnson J.,Laserna J.,Lasue J.,Madsen S.,Mateo-Marti E.,Medina J.,Meslin P.-Y.,Montagnac G.,Moral A.,Moros J.,Ollila A. M.,Ortega C.,Prieto-Ballesteros O.,Reess J. M.,Robinson S.,Rodriguez J.,Saiz J.,Sanz-Arranz J. A.,Sard I.,Sautter V.,Sobron P.,Toplis M.,Veneranda M.

Abstract

AbstractSuperCam is a highly integrated remote-sensing instrumental suite for NASA’s Mars 2020 mission. It consists of a co-aligned combination of Laser-Induced Breakdown Spectroscopy (LIBS), Time-Resolved Raman and Luminescence (TRR/L), Visible and Infrared Spectroscopy (VISIR), together with sound recording (MIC) and high-magnification imaging techniques (RMI). They provide information on the mineralogy, geochemistry and mineral context around the Perseverance Rover.The calibration of this complex suite is a major challenge. Not only does each technique require its own standards or references, their combination also introduces new requirements to obtain optimal scientific output. Elemental composition, molecular vibrational features, fluorescence, morphology and texture provide a full picture of the sample with spectral information that needs to be co-aligned, correlated, and individually calibrated.The resulting hardware includes different kinds of targets, each one covering different needs of the instrument. Standards for imaging calibration, geological samples for mineral identification and chemometric calculations or spectral references to calibrate and evaluate the health of the instrument, are all included in the SuperCam Calibration Target (SCCT). The system also includes a specifically designed assembly in which the samples are mounted. This hardware allows the targets to survive the harsh environmental conditions of the launch, cruise, landing and operation on Mars during the whole mission. Here we summarize the design, development, integration, verification and functional testing of the SCCT. This work includes some key results obtained to verify the scientific outcome of the SuperCam system.

Funder

Ministerio de Economía y Competitividad

Universidad de Valladolid

Ayuntamiento de Valladolid

Diputación de Valladolid

Junta de Castilla y León

Gobierno Vasco

Centre National d’Etudes Spatiales

Centre National de la Recherche Scientifique

Carlsbergfondet

NASA Mars Exploration Program

Los Alamos National Laboratory

Canadian Space Agency

Natural Sciences and Engineering Research Council of Canada

Canada Foundation for Innovation

Ministère des relations internationales et de la Francophonie

University of Winnipeg

Publisher

Springer Science and Business Media LLC

Subject

Space and Planetary Science,Astronomy and Astrophysics

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