Petrological Traverse of the Olivine Cumulate Séítah Formation at Jezero Crater, Mars: A Perspective From SuperCam Onboard Perseverance

Author:

Beyssac O.1ORCID,Forni O.2,Cousin A.2ORCID,Udry A.3ORCID,Kah L. C.4,Mandon L.5ORCID,Clavé O. E.6ORCID,Liu Y.7,Poulet F.8,Quantin Nataf C.9,Gasnault O.2ORCID,Johnson J. R.10ORCID,Benzerara K.1,Beck P.11,Dehouck E.9ORCID,Mangold N.12ORCID,Alvarez Llamas C.13ORCID,Anderson R. B.14ORCID,Arana G.15ORCID,Barnes R.16ORCID,Bernard S.1,Bosak T.17ORCID,Brown A. J.18ORCID,Castro K.15ORCID,Chide B.19ORCID,Clegg S. M.19ORCID,Cloutis E.20ORCID,Fouchet T.5ORCID,Gabriel T.14,Gupta S.16,Lacombe G.221,Lasue J.2ORCID,Le Mouelic S.12ORCID,Lopez‐Reyes G.22ORCID,Madariaga J. M.15ORCID,McCubbin F. M.23,McLennan S. M.24ORCID,Manrique J. A.222ORCID,Meslin P. Y.2ORCID,Montmessin F.21ORCID,Núñez J.10ORCID,Ollila A. M.19,Ostwald A.3,Pilleri P.2ORCID,Pinet P.2ORCID,Royer C.5ORCID,Sharma S. K.25ORCID,Schröder S.26ORCID,Simon J. I.27ORCID,Toplis M. J.2,Veneranda M.22ORCID,Willis P. A.7ORCID,Maurice S.2,Wiens R. C.28ORCID,

Affiliation:

1. Institut de Minéralogie, de Physique des Matériaux et de Cosmochimie CNRS UMR 7590 Sorbonne Université Muséum National d'Histoire Naturelle Paris France

2. Institut de Recherche en Astrophysique et Planétologie Université de Toulouse 3 Paul Sabatier CNRS CNES Toulouse France

3. Department of Geoscience University of Nevada, Las Vegas Las Vegas NV USA

4. Department of Earth and Planetary Sciences University of Tennessee, Knoxville Knoxville TN USA

5. Laboratoire d’Etudes Spatiales et d’Instrumentation en Astrophysique Observatoire de Paris‐PSL CNRS Sorbonne Université Université de Paris Cité Meudon France

6. Centre Lasers Intenses et Applications CNRS CEA Université de Bordeaux Bordeaux France

7. Jet Propulsion Laboratory California Institute of Technology Pasadena CA USA

8. Institut d’Astrophysique Spatiale CNRS Université Paris‐Saclay Orsay France

9. Laboratoire de Géologie de Lyon: Terre Université de Lyon Université Claude Bernard Lyon1 Ecole Normale Supérieure de Lyon Université Jean Monnet Saint Etienne CNRS Villeurbanne France

10. Space Exploration Sector Johns Hopkins University Applied Physics Laboratory Laurel MD USA

11. Institut de Planétologie et Astrophysique de Grenoble CNRS Université Grenoble Alpes Grenoble France

12. Laboratoire de Planétologie et Géosciences CNRS Nantes Université Université Angers Nantes France

13. Department of Analytical Chemistry University of Malaga (UMA) Malaga Spain

14. USGS Astrogeology Science Center U.S. Geological Survey Flagstaff AZ USA

15. Department of Analytical Chemistry University of the Basque Country UPV/EHU Leioa Spain

16. Department of Earth Sciences and Engineering Imperial College London London UK

17. Department of Earth, Atmospheric and Planetary Sciences Massachusetts Institute of Technology Cambridge MA USA

18. Plancius Research Severna Park MD USA

19. Space and Planetary Exploration Team Los Alamos National Laboratory Los Alamos NM USA

20. C‐TAPE University of Winnipeg Winnipeg MB Canada

21. Laboratoire Atmosphères, Milieux, Observations Spatiales CNRS Université Saint‐Quentin‐en‐Yvelines Université Paris Saclay Sorbonne Université Guyancourt France

22. Research Group ERICA Universidad de Valladolid (UVa) Valladolid Spain

23. Astromaterials Research and Exploration Science NASA Johnson Space Center Houston TX USA

24. Department of Geosciences Stony Brook University State University of New York Stony Brook NY USA

25. Hawai'i Institute of Geophysics and Planetology University of Hawaiʻi at Mānoa Honolulu HI USA

26. Deutsches Zentrum fur Luft‐ und Raumfahrt (DLR) Institute of Optical Sensor Systems Berlin Germany

27. Center for Isotope Cosmochemistry and Geochronology Astromaterials Research and Exploration Science Division NASA Johnson Space Center Houston TX USA

28. Department of Earth, Atmospheric, and Planetary Sciences Purdue University West Lafayette IN USA

Abstract

AbstractSéítah is the stratigraphically lowest formation visited by Perseverance in the Jezero crater floor. We present the data obtained by SuperCam: texture by imagery, chemistry by Laser‐Induced Breakdown Spectroscopy, and mineralogy by Supercam Visible and Infrared reflectance and Raman spectroscopy. The Séítah formation consists of igneous, weakly altered rocks dominated by millimeter‐sized grains of olivine with the presence of low‐Ca and high‐Ca pyroxenes, and other primary minerals (e.g., plagioclase, Cr‐Fe‐Ti oxides, phosphates). Along a ∼140 m long section in Séítah, SuperCam analyses showed evidence of geochemical and mineralogical variations, from the contact with the overlying Máaz formation, going deeper in the formation. Bulk rock and olivine Mg#, grain size, olivine content increase gradually further from the contact. Along the section, olivine Mg# is not in equilibrium with the bulk rock Mg#, indicating local olivine accumulation. These observations are consistent with Séítah being the deep ultramafic member of a cumulate series derived from the fractional crystallization and slow cooling of the parent magma at depth. Possible magmatic processes and exhumation mechanisms of Séítah are discussed. Séítah rocks show some affinity with some rocks at Gusev crater, and with some Martian meteorites suggesting that such rocks are not rare on the surface of Mars. Séítah is part of the Nili Fossae regional olivine‐carbonate unit observed from orbit. Future exploration of Perseverance on the rim and outside of the crater will help determine if the observations from the crater floor can be extrapolated to the whole unit or if this unit is composed of distinct sub‐units with various origins.

Publisher

American Geophysical Union (AGU)

Subject

Space and Planetary Science,Earth and Planetary Sciences (miscellaneous),Geochemistry and Petrology,Geophysics

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