Mineralogy, Morphology, and Emplacement History of the Maaz Formation on the Jezero Crater Floor From Orbital and Rover Observations

Author:

Horgan Briony1ORCID,Udry Arya2ORCID,Rice Melissa3,Alwmark Sanna45ORCID,Amundsen Hans E. F.6,Bell James F.7ORCID,Crumpler Larry8ORCID,Garczynski Brad1ORCID,Johnson Jeff9ORCID,Kinch Kjartan5ORCID,Mandon Lucia10ORCID,Merusi Marco5ORCID,Million Chase11ORCID,Núñez Jorge I.9ORCID,Russell Patrick12,Simon Justin I.13ORCID,St. Clair Michael11ORCID,Stack Kathryn M.14,Vaughan Alicia15ORCID,Wogsland Brittan16ORCID,Annex Andrew1718ORCID,Bechtold Andreas1920ORCID,Berger Tor6,Beyssac Olivier21ORCID,Brown Adrian22ORCID,Cloutis Ed23ORCID,Cohen Barbara A.24ORCID,Fagents Sarah25,Kah Linda16ORCID,Farley Ken17ORCID,Flannery David26ORCID,Gupta Sanjeev27,Hamran Svein‐Erik6,Liu Yang14,Paar Gerhard28ORCID,Quantin‐Nataf Cathy29,Randazzo Nicolas30,Ravanis Eleni25ORCID,Sholes Steven14ORCID,Shuster David31,Sun Vivian14ORCID,Tate Christian32ORCID,Tosca Nick33ORCID,Wadhwa Meenakshi7ORCID,Wiens Roger C.1ORCID

Affiliation:

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

2. Department of Geosciences University of Nevada Las Vegas Las Vegas NV USA

3. Western Washington University Bellingham WA USA

4. Department of Geology Lund University Lund Sweden

5. Niels Bohr Institute University of Copenhagen Copenhagen Denmark

6. Center for Space Sensors and Systems (CENSSS) University of Oslo Oslo Norway

7. School of Earth and Space Exploration Arizona State University Tempe AZ USA

8. New Mexico Museum of Natural History and Science Albuquerque NM USA

9. Johns Hopkins University Applied Physics Laboratory Laurel MD USA

10. LESIA, Observatoire de Paris Université PSL CNRS Sorbonne Université Université de Paris Meudon France

11. Million Concepts LLC Louisville KY USA

12. Department EPSS University of California, Los Angeles Los Angeles CA USA

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

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

15. Apogee Engineering, LLC Flagstaff AZ USA

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

17. Division of Geological and Planetary Sciences California Institute of Technology Pasadena CA USA

18. Morton K. Blaustein Department of Earth & Planetary Sciences Johns Hopkins University Baltimore MD USA

19. Department of Lithospheric Research University of Vienna Vienna Austria

20. Austrian Academy of Sciences Vienna Austria

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

22. Plancius Reseach LLC Severna Park MD USA

23. Centre for Terrestrial and Planetary Exploration University of Winnipeg Winnipeg MB Canada

24. NASA Goddard Space Flight Center Greenbelt MD USA

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

26. Queensland University of Technology Brisbane QLD Australia

27. Department of Earth Science and Engineering Imperial College London London UK

28. Joanneum Research Institute for Information and Communication Technologies Graz Austria

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

30. Department of Earth and Atmospheric Sciences University of Alberta Edmonton AB Canada

31. Department of Earth and Planetary Science University of California, Berkeley Berkeley CA USA

32. Department of Astronomy Cornell University Ithaca NY USA

33. Department of Earth Sciences University of Cambridge Cambridge UK

Abstract

AbstractThe first samples collected by the Perseverance rover on the Mars 2020 mission were from the Maaz formation, a lava plain that covers most of the floor of Jezero crater. Laboratory analysis of these samples back on Earth would provide important constraints on the petrologic history, aqueous processes, and timing of key events in Jezero crater. However, interpreting these samples requires a detailed understanding of the emplacement and modification history of the Maaz formation. Here we synthesize rover and orbital remote sensing data to link outcrop‐scale interpretations to the broader history of the crater, including Mastcam‐Z mosaics and multispectral images, SuperCam chemistry and reflectance point spectra, Radar Imager for Mars' subsurface eXperiment ground penetrating radar, and orbital hyperspectral reflectance and high‐resolution images. We show that the Maaz formation is composed of a series of distinct members corresponding to basaltic to basaltic‐andesite lava flows. The members exhibit variable spectral signatures dominated by high‐Ca pyroxene, Fe‐bearing feldspar, and hematite, which can be tied directly to igneous grains and altered matrix in abrasion patches. Spectral variations correlate with morphological variations, from recessive layers that produce a regolith lag in lower Maaz, to weathered polygonally fractured paleosurfaces and crater‐retaining massive blocky hummocks in upper Maaz. The Maaz members were likely separated by one or more extended periods of time, and were subjected to variable erosion, burial, exhumation, weathering, and tectonic modification. The two unique samples from the Maaz formation are representative of this diversity, and together will provide an important geochronological framework for the history of Jezero crater.

Funder

UK Space Agency

Publisher

American Geophysical Union (AGU)

Subject

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

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