Architecture of Fluvial and Deltaic Deposits Exposed Along the Eastern Edge of the Western Fan of Jezero Crater, Mars

Author:

Mangold N.1ORCID,Caravaca G.2ORCID,Gupta S.3,Williams R. M. E.4ORCID,Dromart G.5,Gasnault O.2ORCID,Le Mouélic S.1ORCID,Paar G.6ORCID,Bell J.7,Beyssac O.8,Carlot N.1ORCID,Cousin A.2ORCID,Dehouck E.5ORCID,Horgan B.9ORCID,Kah L. C.10ORCID,Lasue J.2ORCID,Maurice S.2ORCID,Núñez J. I.11ORCID,Shuster D.12,Stack K. M.13,Weiss B. P.14ORCID,Wiens R. C.9ORCID

Affiliation:

1. Laboratoire Planétologie et Géosciences Centre National de Recherches Scientifiques Nantes Université Université Angers Le Mans Université UMR6112 Nantes France

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

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

4. Planetary Science Institute Tucson AZ USA

5. Laboratoire de Géologie de Lyon‐Terre Planètes Environnement Université Claude Bernard Lyon 1 Ecole Normale Supérieure Lyon Centre National de Recherches Scientifiques Villeurbanne France

6. Joanneum Research Graz Austria

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

8. Institut de Minéralogie de Physique des Matériaux et de Cosmochimie UMR7590 Centre National de Recherches Scientifiques Sorbonne Université Museum National d’Histoires Naturelles Paris France

9. Earth, Atmospheric, and Planetary Sciences Purdue University West Lafayette IN USA

10. University of Tennessee Knoxville TN USA

11. Johns Hopkins University Applied Physics Laboratory Laurel MD USA

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

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

14. Department of Earth, Atmospheric, and Planetary Science Massachusetts Institute of Technology Cambridge MA USA

Abstract

AbstractEarly observations from the Perseverance rover suggested a deltaic origin for the western fan of Jezero crater only from images of the Kodiak butte. Here, we use images from the SuperCam Remote Micro‐Imager and the Mastcam‐Z camera to analyze the western fan front along the rover traverse, and further assess its depositional origin. Outcrops in the middle to lower half of the hillslopes comprise planar and inclined beds of sandstone that are interpreted as foresets of deltaic deposits. Foresets are locally structured in ∼20–25 m thick, ∼80–100 m long, antiformal structures interpreted as deltaic mouth bars. Above these foresets, interbedded sandstones and boulder conglomerates are interpreted as fluvial topset beds. One well‐preserved lens of boulder conglomerate displays rounded clasts within well‐sorted sediment deposited in overall fining upward beds. We interpret these deposits as resulting from lateral accretion within fluvial channels. Estimations of peak discharge rates give a range between ∼100 and ∼500 m3 s−1. By contrast, boulder conglomerates exposed in the uppermost part of hillslopes are poorly sorted and truncate the underlying beds. The presence of these boulder deposits suggests that intense sediment‐laden flood episodes occurred after the deltaic foreset and topset beds were deposited, although the origin, timing, and relationship of these boulder deposits to the ancient lake that once filled Jezero crater remains undetermined. Overall, these observations confirm the deltaic nature of the fan front, and suggest a highly variable fluvial input.

Funder

Jet Propulsion Laboratory

National Aeronautics and Space Administration

Publisher

American Geophysical Union (AGU)

Reference51 articles.

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