Literature DB >> 30598561

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

A Deanne Rogers1, Nicholas H Warner2, Matthew P Golombek3, James W Head4, Justin C Cowart1.   

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.

Entities:  

Year:  2018        PMID: 30598561      PMCID: PMC6310033          DOI: 10.1002/2018GL077030

Source DB:  PubMed          Journal:  Geophys Res Lett        ISSN: 0094-8276            Impact factor:   4.720


  6 in total

1.  Photogeologic Map of the Perseverance Rover Field Site in Jezero Crater Constructed by the Mars 2020 Science Team.

Authors:  Kathryn M Stack; Nathan R Williams; Fred Calef; Vivian Z Sun; Kenneth H Williford; Kenneth A Farley; Sigurd Eide; David Flannery; Cory Hughes; Samantha R Jacob; Linda C Kah; Forrest Meyen; Antonio Molina; Cathy Quantin Nataf; Melissa Rice; Patrick Russell; Eva Scheller; Christina H Seeger; William J Abbey; Jacob B Adler; Hans Amundsen; Ryan B Anderson; Stanley M Angel; Gorka Arana; James Atkins; Megan Barrington; Tor Berger; Rose Borden; Beau Boring; Adrian Brown; Brandi L Carrier; Pamela Conrad; Henning Dypvik; Sarah A Fagents; Zachary E Gallegos; Brad Garczynski; Keenan Golder; Felipe Gomez; Yulia Goreva; Sanjeev Gupta; Svein-Erik Hamran; Taryn Hicks; Eric D Hinterman; Briony N Horgan; Joel Hurowitz; Jeffrey R Johnson; Jeremie Lasue; Rachel E Kronyak; Yang Liu; Juan Manuel Madariaga; Nicolas Mangold; John McClean; Noah Miklusicak; Daniel Nunes; Corrine Rojas; Kirby Runyon; Nicole Schmitz; Noel Scudder; Emily Shaver; Jason SooHoo; Russell Spaulding; Evan Stanish; Leslie K Tamppari; Michael M Tice; Nathalie Turenne; Peter A Willis; R Aileen Yingst
Journal:  Space Sci Rev       Date:  2020-11-03       Impact factor: 8.017

2.  The Oldest Highlands of Mars May Be Massive Dust Fallout Deposits.

Authors:  J Alexis P Rodriguez; Eldar Noe Dobrea; Jeffrey S Kargel; V R Baker; David A Crown; Kevin D Webster; Daniel C Berman; Mary Beth Wilhelm; Denise Buckner
Journal:  Sci Rep       Date:  2020-06-25       Impact factor: 4.379

3.  Ground penetrating radar observations of subsurface structures in the floor of Jezero crater, Mars.

Authors:  Svein-Erik Hamran; David A Paige; Abigail Allwood; Hans E F Amundsen; Tor Berger; Sverre Brovoll; Lynn Carter; Titus M Casademont; Leif Damsgård; Henning Dypvik; Sigurd Eide; Alberto G Fairén; Rebecca Ghent; Jack Kohler; Michael T Mellon; Daniel C Nunes; Dirk Plettemeier; Patrick Russell; Matt Siegler; Mats Jørgen Øyan
Journal:  Sci Adv       Date:  2022-08-25       Impact factor: 14.957

4.  Compositionally and density stratified igneous terrain in Jezero crater, Mars.

Authors:  Roger C Wiens; Arya Udry; Olivier Beyssac; Cathy Quantin-Nataf; Nicolas Mangold; Agnès Cousin; Lucia Mandon; Tanja Bosak; Olivier Forni; Scott M McLennan; Violaine Sautter; Adrian Brown; Karim Benzerara; Jeffrey R Johnson; Lisa Mayhew; Sylvestre Maurice; Ryan B Anderson; Samuel M Clegg; Larry Crumpler; Travis S J Gabriel; Patrick Gasda; James Hall; Briony H N Horgan; Linda Kah; Carey Legett; Juan Manuel Madariaga; Pierre-Yves Meslin; Ann M Ollila; Francois Poulet; Clement Royer; Shiv K Sharma; Sandra Siljeström; Justin I Simon; Tayro E Acosta-Maeda; Cesar Alvarez-Llamas; S Michael Angel; Gorka Arana; Pierre Beck; Sylvain Bernard; Tanguy Bertrand; Bruno Bousquet; Kepa Castro; Baptiste Chide; Elise Clavé; Ed Cloutis; Stephanie Connell; Erwin Dehouck; Gilles Dromart; Woodward Fischer; Thierry Fouchet; Raymond Francis; Jens Frydenvang; Olivier Gasnault; Erin Gibbons; Sanjeev Gupta; Elisabeth M Hausrath; Xavier Jacob; Hemani Kalucha; Evan Kelly; Elise Knutsen; Nina Lanza; Javier Laserna; Jeremie Lasue; Stéphane Le Mouélic; Richard Leveille; Guillermo Lopez Reyes; Ralph Lorenz; Jose Antonio Manrique; Jesus Martinez-Frias; Tim McConnochie; Noureddine Melikechi; David Mimoun; Franck Montmessin; Javier Moros; Naomi Murdoch; Paolo Pilleri; Cedric Pilorget; Patrick Pinet; William Rapin; Fernando Rull; Susanne Schröder; David L Shuster; Rebecca J Smith; Alexander E Stott; Jesse Tarnas; Nathalie Turenne; Marco Veneranda; David S Vogt; Benjamin P Weiss; Peter Willis; Kathryn M Stack; Kenneth H Williford; Kenneth A Farley
Journal:  Sci Adv       Date:  2022-08-25       Impact factor: 14.957

5.  Distinct Carbonate Lithologies in Jezero Crater, Mars.

Authors:  Allison M Zastrow; Timothy D Glotch
Journal:  Geophys Res Lett       Date:  2021-05-06       Impact factor: 4.720

6.  Olivine-Carbonate Mineralogy of the Jezero Crater Region.

Authors:  A J Brown; C E Viviano; T A Goudge
Journal:  J Geophys Res Planets       Date:  2020-02-21       Impact factor: 3.755

  6 in total

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