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Diverse and highly differentiated lava suite in Jezero crater, Mars: Constraints on intracrustal magmatism revealed by Mars 2020 PIXL

  • Mariek E. Schmidt
  • , Tanya V. Kizovski
  • , Yang Liu
  • , Juan D. Hernandez-Montenegro
  • , Michael M. Tice
  • , Allan H. Treiman
  • , Joel A. Hurowitz
  • , David A. Klevang
  • , Abigail L. Knight
  • , Joshua Labrie
  • , Nicholas J. Tosca
  • , Scott J. VanBommel
  • , Sophie Benaroya
  • , Larry S. Crumpler
  • , Briony H.N. Horgan
  • , Richard V. Morris
  • , Justin I. Simon
  • , Arya Udry
  • , Anastasia Yanchilina
  • , Abigail C. Allwood
  • Morgan L. Cable, John R. Christian, Benton C. Clark, David T. Flannery, Christopher M. Heirwegh, Thomas L.J. Henley, Jesper Henneke, Michael W.M. Jones, Brendan J. Orenstein, Christopher D.K. Herd, Nicholas Randazzo, David Shuster, Meenakshi Wadhwa
  • Brock University
  • California Institute of Technology
  • Texas A&M University
  • Universities Space Research Association
  • Technical University of Denmark
  • Washington University St. Louis
  • University of Cambridge
  • University of Alberta
  • New Mexico Museum Natural History and Science
  • Purdue University
  • NASA Johnson Space Center
  • University of Nevada, Las Vegas
  • Space Science Institute
  • Queensland University of Technology
  • University of California at Berkeley
  • Arizona State University

Research output: Contribution to journalArticlepeer-review

25 Scopus citations

Abstract

The Jezero crater floor features a suite of related, iron-rich lavas that were examined and sampled by the Mars 2020 rover Perseverance, and whose textures, minerals, and compositions were characterized by the Planetary Instrument for X-ray Lithochemistry (PIXL). This suite, known as the Máaz formation (fm), includes dark-toned basaltic/trachy-basaltic rocks with intergrown pyroxene, plagioclase feldspar, and altered olivine and overlying trachy-andesitic lava with reversely zoned plagioclase phenocrysts in a K-rich groundmass. Feldspar thermal disequilibrium textures indicate that they were carried from their crustal staging area. Bulk and mafic minerals have very high FeO and low MgO to FeOtotal ratios, which are partially reproduced by thermodynamic models involving high-degree fractional crystallization of a gabbroic assemblage and possibly also assimilation of iron-rich basement. Together, these in situ constraints on petrogenesis provide a uniquely detailed record of intracrustal processes beneath Jezero crater during a time period not represented by Mars samples to date.

Original languageEnglish
Article numbereadr2613
JournalScience Advances
Volume11
Issue number4
DOIs
StatePublished - Jan 24 2025

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