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Areally Extensive Surface Bedrock Exposures on Mars: Many Are Clastic Rocks, Not Lavas

  • A. Deanne Rogers
  • , Nicholas H. Warner
  • , Matthew P. Golombek
  • , James W. Head
  • , Justin C. Cowart
  • SUNY Geneseo
  • Jet Propulsion Laboratory, California Institute of Technology
  • Brown University
  • Stony Brook University

Research output: Contribution to journalArticlepeer-review

75 Scopus citations

Abstract

Areally extensive exposures of intact olivine/pyroxene-enriched rock, as well as feldspar-enriched rock, are found in isolated locations throughout the Martian highlands. The petrogenetic origin(s) of these rock units are not well understood, but some previous studies favored an effusive volcanic origin partly on the basis of distinctive composition and relatively high thermal inertia. Here we show that the regolith development, crater retention, and morphological characteristics for many of these “bedrock plains” are not consistent with competent lavas and reinterpret the high thermal inertia orbital signatures to represent friable materials that are more easily kept free of comminution products through eolian activity. Candidate origins include pyroclastic rocks, impact-generated materials, or detrital sedimentary rocks. Olivine/pyroxene enrichments in bedrock plains relative to surrounding materials could have potentially formed through deflation and preferential removal of plagioclase.

Original languageEnglish
Pages (from-to)1767-1777
Number of pages11
JournalGeophysical Research Letters
Volume45
Issue number4
DOIs
StatePublished - Feb 28 2018

Keywords

  • bedrock
  • eolian
  • Mars
  • olivine
  • resurfacing
  • sedimentary

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