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Compositionally and density stratified igneous terrain in Jezero crater, Mars
Before Perseverance, Jezero crater’s floor was variably hypothesized to have a lacustrine, lava, volcanic airfall, or aeolian origin. SuperCam observations in the first 286 Mars days on Mars revealed a volcanic and intrusive terrain with compositional and density stratification. The dominant litholo...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Association for the Advancement of Science
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9410274/ https://www.ncbi.nlm.nih.gov/pubmed/36007007 http://dx.doi.org/10.1126/sciadv.abo3399 |
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author | Wiens, Roger C. Udry, Arya Beyssac, Olivier Quantin-Nataf, Cathy Mangold, Nicolas Cousin, Agnès Mandon, Lucia Bosak, Tanja Forni, Olivier McLennan, Scott M. Sautter, Violaine Brown, Adrian Benzerara, Karim Johnson, Jeffrey R. Mayhew, Lisa Maurice, Sylvestre Anderson, Ryan B. Clegg, Samuel M. Crumpler, Larry Gabriel, Travis S. J. Gasda, Patrick Hall, James Horgan, Briony H. N. Kah, Linda Legett, Carey Madariaga, Juan Manuel Meslin, Pierre-Yves Ollila, Ann M. Poulet, Francois Royer, Clement Sharma, Shiv K. Siljeström, Sandra Simon, Justin I. Acosta-Maeda, Tayro E. Alvarez-Llamas, Cesar Angel, S. Michael Arana, Gorka Beck, Pierre Bernard, Sylvain Bertrand, Tanguy Bousquet, Bruno Castro, Kepa Chide, Baptiste Clavé, Elise Cloutis, Ed Connell, Stephanie Dehouck, Erwin Dromart, Gilles Fischer, Woodward Fouchet, Thierry Francis, Raymond Frydenvang, Jens Gasnault, Olivier Gibbons, Erin Gupta, Sanjeev Hausrath, Elisabeth M. Jacob, Xavier Kalucha, Hemani Kelly, Evan Knutsen, Elise Lanza, Nina Laserna, Javier Lasue, Jeremie Le Mouélic, Stéphane Leveille, Richard Lopez Reyes, Guillermo Lorenz, Ralph Manrique, Jose Antonio Martinez-Frias, Jesus McConnochie, Tim Melikechi, Noureddine Mimoun, David Montmessin, Franck Moros, Javier Murdoch, Naomi Pilleri, Paolo Pilorget, Cedric Pinet, Patrick Rapin, William Rull, Fernando Schröder, Susanne Shuster, David L. Smith, Rebecca J. Stott, Alexander E. Tarnas, Jesse Turenne, Nathalie Veneranda, Marco Vogt, David S. Weiss, Benjamin P. Willis, Peter Stack, Kathryn M. Williford, Kenneth H. Farley, Kenneth A. |
author_facet | Wiens, Roger C. Udry, Arya Beyssac, Olivier Quantin-Nataf, Cathy Mangold, Nicolas Cousin, Agnès Mandon, Lucia Bosak, Tanja Forni, Olivier McLennan, Scott M. Sautter, Violaine Brown, Adrian Benzerara, Karim Johnson, Jeffrey R. Mayhew, Lisa Maurice, Sylvestre Anderson, Ryan B. Clegg, Samuel M. Crumpler, Larry Gabriel, Travis S. J. Gasda, Patrick Hall, James Horgan, Briony H. N. Kah, Linda Legett, Carey Madariaga, Juan Manuel Meslin, Pierre-Yves Ollila, Ann M. Poulet, Francois Royer, Clement Sharma, Shiv K. Siljeström, Sandra Simon, Justin I. Acosta-Maeda, Tayro E. Alvarez-Llamas, Cesar Angel, S. Michael Arana, Gorka Beck, Pierre Bernard, Sylvain Bertrand, Tanguy Bousquet, Bruno Castro, Kepa Chide, Baptiste Clavé, Elise Cloutis, Ed Connell, Stephanie Dehouck, Erwin Dromart, Gilles Fischer, Woodward Fouchet, Thierry Francis, Raymond Frydenvang, Jens Gasnault, Olivier Gibbons, Erin Gupta, Sanjeev Hausrath, Elisabeth M. Jacob, Xavier Kalucha, Hemani Kelly, Evan Knutsen, Elise Lanza, Nina Laserna, Javier Lasue, Jeremie Le Mouélic, Stéphane Leveille, Richard Lopez Reyes, Guillermo Lorenz, Ralph Manrique, Jose Antonio Martinez-Frias, Jesus McConnochie, Tim Melikechi, Noureddine Mimoun, David Montmessin, Franck Moros, Javier Murdoch, Naomi Pilleri, Paolo Pilorget, Cedric Pinet, Patrick Rapin, William Rull, Fernando Schröder, Susanne Shuster, David L. Smith, Rebecca J. Stott, Alexander E. Tarnas, Jesse Turenne, Nathalie Veneranda, Marco Vogt, David S. Weiss, Benjamin P. Willis, Peter Stack, Kathryn M. Williford, Kenneth H. Farley, Kenneth A. |
author_sort | Wiens, Roger C. |
collection | PubMed |
description | Before Perseverance, Jezero crater’s floor was variably hypothesized to have a lacustrine, lava, volcanic airfall, or aeolian origin. SuperCam observations in the first 286 Mars days on Mars revealed a volcanic and intrusive terrain with compositional and density stratification. The dominant lithology along the traverse is basaltic, with plagioclase enrichment in stratigraphically higher locations. Stratigraphically lower, layered rocks are richer in normative pyroxene. The lowest observed unit has the highest inferred density and is olivine-rich with coarse (1.5 millimeters) euhedral, relatively unweathered grains, suggesting a cumulate origin. This is the first martian cumulate and shows similarities to martian meteorites, which also express olivine disequilibrium. Alteration materials including carbonates, sulfates, perchlorates, hydrated silicates, and iron oxides are pervasive but low in abundance, suggesting relatively brief lacustrine conditions. Orbital observations link the Jezero floor lithology to the broader Nili-Syrtis region, suggesting that density-driven compositional stratification is a regional characteristic. |
format | Online Article Text |
id | pubmed-9410274 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | American Association for the Advancement of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-94102742022-08-26 Compositionally and density stratified igneous terrain in Jezero crater, Mars Wiens, Roger C. Udry, Arya Beyssac, Olivier Quantin-Nataf, Cathy Mangold, Nicolas Cousin, Agnès Mandon, Lucia Bosak, Tanja Forni, Olivier McLennan, Scott M. Sautter, Violaine Brown, Adrian Benzerara, Karim Johnson, Jeffrey R. Mayhew, Lisa Maurice, Sylvestre Anderson, Ryan B. Clegg, Samuel M. Crumpler, Larry Gabriel, Travis S. J. Gasda, Patrick Hall, James Horgan, Briony H. N. Kah, Linda Legett, Carey Madariaga, Juan Manuel Meslin, Pierre-Yves Ollila, Ann M. Poulet, Francois Royer, Clement Sharma, Shiv K. Siljeström, Sandra Simon, Justin I. Acosta-Maeda, Tayro E. Alvarez-Llamas, Cesar Angel, S. Michael Arana, Gorka Beck, Pierre Bernard, Sylvain Bertrand, Tanguy Bousquet, Bruno Castro, Kepa Chide, Baptiste Clavé, Elise Cloutis, Ed Connell, Stephanie Dehouck, Erwin Dromart, Gilles Fischer, Woodward Fouchet, Thierry Francis, Raymond Frydenvang, Jens Gasnault, Olivier Gibbons, Erin Gupta, Sanjeev Hausrath, Elisabeth M. Jacob, Xavier Kalucha, Hemani Kelly, Evan Knutsen, Elise Lanza, Nina Laserna, Javier Lasue, Jeremie Le Mouélic, Stéphane Leveille, Richard Lopez Reyes, Guillermo Lorenz, Ralph Manrique, Jose Antonio Martinez-Frias, Jesus McConnochie, Tim Melikechi, Noureddine Mimoun, David Montmessin, Franck Moros, Javier Murdoch, Naomi Pilleri, Paolo Pilorget, Cedric Pinet, Patrick Rapin, William Rull, Fernando Schröder, Susanne Shuster, David L. Smith, Rebecca J. Stott, Alexander E. Tarnas, Jesse Turenne, Nathalie Veneranda, Marco Vogt, David S. Weiss, Benjamin P. Willis, Peter Stack, Kathryn M. Williford, Kenneth H. Farley, Kenneth A. Sci Adv Earth, Environmental, Ecological, and Space Sciences Before Perseverance, Jezero crater’s floor was variably hypothesized to have a lacustrine, lava, volcanic airfall, or aeolian origin. SuperCam observations in the first 286 Mars days on Mars revealed a volcanic and intrusive terrain with compositional and density stratification. The dominant lithology along the traverse is basaltic, with plagioclase enrichment in stratigraphically higher locations. Stratigraphically lower, layered rocks are richer in normative pyroxene. The lowest observed unit has the highest inferred density and is olivine-rich with coarse (1.5 millimeters) euhedral, relatively unweathered grains, suggesting a cumulate origin. This is the first martian cumulate and shows similarities to martian meteorites, which also express olivine disequilibrium. Alteration materials including carbonates, sulfates, perchlorates, hydrated silicates, and iron oxides are pervasive but low in abundance, suggesting relatively brief lacustrine conditions. Orbital observations link the Jezero floor lithology to the broader Nili-Syrtis region, suggesting that density-driven compositional stratification is a regional characteristic. American Association for the Advancement of Science 2022-08-25 /pmc/articles/PMC9410274/ /pubmed/36007007 http://dx.doi.org/10.1126/sciadv.abo3399 Text en Copyright © 2022 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution NonCommercial License 4.0 (CC BY-NC). https://creativecommons.org/licenses/by-nc/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial license (https://creativecommons.org/licenses/by-nc/4.0/) , which permits use, distribution, and reproduction in any medium, so long as the resultant use is not for commercial advantage and provided the original work is properly cited. |
spellingShingle | Earth, Environmental, Ecological, and Space Sciences Wiens, Roger C. Udry, Arya Beyssac, Olivier Quantin-Nataf, Cathy Mangold, Nicolas Cousin, Agnès Mandon, Lucia Bosak, Tanja Forni, Olivier McLennan, Scott M. Sautter, Violaine Brown, Adrian Benzerara, Karim Johnson, Jeffrey R. Mayhew, Lisa Maurice, Sylvestre Anderson, Ryan B. Clegg, Samuel M. Crumpler, Larry Gabriel, Travis S. J. Gasda, Patrick Hall, James Horgan, Briony H. N. Kah, Linda Legett, Carey Madariaga, Juan Manuel Meslin, Pierre-Yves Ollila, Ann M. Poulet, Francois Royer, Clement Sharma, Shiv K. Siljeström, Sandra Simon, Justin I. Acosta-Maeda, Tayro E. Alvarez-Llamas, Cesar Angel, S. Michael Arana, Gorka Beck, Pierre Bernard, Sylvain Bertrand, Tanguy Bousquet, Bruno Castro, Kepa Chide, Baptiste Clavé, Elise Cloutis, Ed Connell, Stephanie Dehouck, Erwin Dromart, Gilles Fischer, Woodward Fouchet, Thierry Francis, Raymond Frydenvang, Jens Gasnault, Olivier Gibbons, Erin Gupta, Sanjeev Hausrath, Elisabeth M. Jacob, Xavier Kalucha, Hemani Kelly, Evan Knutsen, Elise Lanza, Nina Laserna, Javier Lasue, Jeremie Le Mouélic, Stéphane Leveille, Richard Lopez Reyes, Guillermo Lorenz, Ralph Manrique, Jose Antonio Martinez-Frias, Jesus McConnochie, Tim Melikechi, Noureddine Mimoun, David Montmessin, Franck Moros, Javier Murdoch, Naomi Pilleri, Paolo Pilorget, Cedric Pinet, Patrick Rapin, William Rull, Fernando Schröder, Susanne Shuster, David L. Smith, Rebecca J. Stott, Alexander E. Tarnas, Jesse Turenne, Nathalie Veneranda, Marco Vogt, David S. Weiss, Benjamin P. Willis, Peter Stack, Kathryn M. Williford, Kenneth H. Farley, Kenneth A. Compositionally and density stratified igneous terrain in Jezero crater, Mars |
title | Compositionally and density stratified igneous terrain in Jezero crater, Mars |
title_full | Compositionally and density stratified igneous terrain in Jezero crater, Mars |
title_fullStr | Compositionally and density stratified igneous terrain in Jezero crater, Mars |
title_full_unstemmed | Compositionally and density stratified igneous terrain in Jezero crater, Mars |
title_short | Compositionally and density stratified igneous terrain in Jezero crater, Mars |
title_sort | compositionally and density stratified igneous terrain in jezero crater, mars |
topic | Earth, Environmental, Ecological, and Space Sciences |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9410274/ https://www.ncbi.nlm.nih.gov/pubmed/36007007 http://dx.doi.org/10.1126/sciadv.abo3399 |
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