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Diagenetic silica enrichment and late-stage groundwater activity in Gale crater, Mars

  • J. Frydenvang
  • , P. J. Gasda
  • , J. A. Hurowitz
  • , J. P. Grotzinger
  • , R. C. Wiens
  • , H. E. Newsom
  • , K. S. Edgett
  • , J. Watkins
  • , J. C. Bridges
  • , S. Maurice
  • , M. R. Fisk
  • , J. R. Johnson
  • , W. Rapin
  • , N. T. Stein
  • , S. M. Clegg
  • , S. P. Schwenzer
  • , C. C. Bedford
  • , P. Edwards
  • , N. Mangold
  • , A. Cousin
  • R. B. Anderson, V. Payré, D. Vaniman, D. F. Blake, N. L. Lanza, S. Gupta, J. Van Beek, V. Sautter, P. Y. Meslin, M. Rice, R. Milliken, R. Gellert, L. Thompson, B. C. Clark, D. Y. Sumner, A. A. Fraeman, K. M. Kinch, M. B. Madsen, I. G. Mitrofanov, I. Jun, F. Calef, A. R. Vasavada
  • Los Alamos National Laboratory
  • University of Copenhagen
  • California Institute of Technology
  • University of New Mexico
  • Malin Space Science Systems
  • University of Leicester
  • Institute de Recherche en Astrophysique et Planétologie
  • Oregon State University
  • Johns Hopkins University Applied Physics Laboratory
  • Open University Milton Keynes
  • Nantes Université
  • United States Geological Survey
  • Université de Lorraine
  • Planetary Science Institute
  • NASA Ames Research Center
  • Imperial College London
  • Muséum national d'histoire naturelle
  • Western Washington University
  • Brown University
  • University of Guelph
  • University of New Brunswick
  • Space Science Institute
  • University of California at Davis
  • Jet Propulsion Laboratory, California Institute of Technology
  • Space Research Institute (IKI)

Research output: Contribution to journalArticlepeer-review

121 Scopus citations

Abstract

Diagenetic silica enrichment in fracture-associated halos that crosscut lacustrine and unconformably overlying aeolian sedimentary bedrock is observed on the lower north slope of Aeolis Mons in Gale crater, Mars. The diagenetic silica enrichment is colocated with detrital silica enrichment observed in the lacustrine bedrock yet extends into a considerably younger, unconformably draping aeolian sandstone, implying that diagenetic silica enrichment postdates the detrital silica enrichment. A causal connection between the detrital and diagenetic silica enrichment implies that water was present in the subsurface of Gale crater long after deposition of the lacustrine sediments and that it mobilized detrital amorphous silica and precipitated it along fractures in the overlying bedrock. Although absolute timing is uncertain, the observed diagenesis likely represents some of the most recent groundwater activity in Gale crater and suggests that the timescale of potential habitability extended considerably beyond the time that the lacustrine sediments of Aeolis Mons were deposited.

Original languageEnglish
Pages (from-to)4716-4724
Number of pages9
JournalGeophysical Research Letters
Volume44
Issue number10
DOIs
StatePublished - May 28 2017

Keywords

  • Diagenesis
  • Gale crater, Mars
  • Groundwater
  • MSL
  • Silica

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