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The Curiosity Rover's Exploration of Glen Torridon, Gale Crater, Mars: An Overview of the Campaign and Scientific Results

The Mars Science Laboratory rover, Curiosity, explored the clay mineral‐bearing Glen Torridon region for 1 Martian year between January 2019 and January 2021, including a short campaign onto the Greenheugh pediment. The Glen Torridon campaign sought to characterize the geology of the area, seek evid...

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Autores principales: Bennett, Kristen A., Fox, Valerie K., Bryk, Alex, Dietrich, William, Fedo, Christopher, Edgar, Lauren, Thorpe, Michael T., Williams, Amy J., Wong, Gregory M., Dehouck, Erwin, McAdam, Amy, Sutter, Brad, Millan, Maëva, Banham, Steven G., Bedford, Candice C., Bristow, Thomas, Fraeman, Abigail, Vasavada, Ashwin R., Grotzinger, John, Thompson, Lucy, O’Connell‐Cooper, Catherine, Gasda, Patrick, Rudolph, Amanda, Sullivan, Robert, Arvidson, Ray, Cousin, Agnes, Horgan, Briony, Stack, Kathryn M., Treiman, Allan, Eigenbrode, Jennifer, Caravaca, Gwénaël
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10078523/
https://www.ncbi.nlm.nih.gov/pubmed/37034460
http://dx.doi.org/10.1029/2022JE007185
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author Bennett, Kristen A.
Fox, Valerie K.
Bryk, Alex
Dietrich, William
Fedo, Christopher
Edgar, Lauren
Thorpe, Michael T.
Williams, Amy J.
Wong, Gregory M.
Dehouck, Erwin
McAdam, Amy
Sutter, Brad
Millan, Maëva
Banham, Steven G.
Bedford, Candice C.
Bristow, Thomas
Fraeman, Abigail
Vasavada, Ashwin R.
Grotzinger, John
Thompson, Lucy
O’Connell‐Cooper, Catherine
Gasda, Patrick
Rudolph, Amanda
Sullivan, Robert
Arvidson, Ray
Cousin, Agnes
Horgan, Briony
Stack, Kathryn M.
Treiman, Allan
Eigenbrode, Jennifer
Caravaca, Gwénaël
author_facet Bennett, Kristen A.
Fox, Valerie K.
Bryk, Alex
Dietrich, William
Fedo, Christopher
Edgar, Lauren
Thorpe, Michael T.
Williams, Amy J.
Wong, Gregory M.
Dehouck, Erwin
McAdam, Amy
Sutter, Brad
Millan, Maëva
Banham, Steven G.
Bedford, Candice C.
Bristow, Thomas
Fraeman, Abigail
Vasavada, Ashwin R.
Grotzinger, John
Thompson, Lucy
O’Connell‐Cooper, Catherine
Gasda, Patrick
Rudolph, Amanda
Sullivan, Robert
Arvidson, Ray
Cousin, Agnes
Horgan, Briony
Stack, Kathryn M.
Treiman, Allan
Eigenbrode, Jennifer
Caravaca, Gwénaël
author_sort Bennett, Kristen A.
collection PubMed
description The Mars Science Laboratory rover, Curiosity, explored the clay mineral‐bearing Glen Torridon region for 1 Martian year between January 2019 and January 2021, including a short campaign onto the Greenheugh pediment. The Glen Torridon campaign sought to characterize the geology of the area, seek evidence of habitable environments, and document the onset of a potentially global climatic transition during the Hesperian era. Curiosity roved 5 km in total throughout Glen Torridon, from the Vera Rubin ridge to the northern margin of the Greenheugh pediment. Curiosity acquired samples from 11 drill holes during this campaign and conducted the first Martian thermochemolytic‐based organics detection experiment with the Sample Analysis at Mars instrument suite. The lowest elevations within Glen Torridon represent a continuation of lacustrine Murray formation deposits, but overlying widespread cross bedded sandstones indicate an interval of more energetic fluvial environments and prompted the definition of a new stratigraphic formation in the Mount Sharp group called the Carolyn Shoemaker formation. Glen Torridon hosts abundant phyllosilicates yet remains compositionally and mineralogically comparable to the rest of the Mount Sharp group. Glen Torridon samples have a great diversity and abundance of sulfur‐bearing organic molecules, which are consistent with the presence of ancient refractory organic matter. The Glen Torridon region experienced heterogeneous diagenesis, with the most striking alteration occurring just below the Siccar Point unconformity at the Greenheugh pediment. Results from the pediment campaign show that the capping sandstone formed within the Stimson Hesperian aeolian sand sea that experienced seasonal variations in wind direction.
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spelling pubmed-100785232023-04-07 The Curiosity Rover's Exploration of Glen Torridon, Gale Crater, Mars: An Overview of the Campaign and Scientific Results Bennett, Kristen A. Fox, Valerie K. Bryk, Alex Dietrich, William Fedo, Christopher Edgar, Lauren Thorpe, Michael T. Williams, Amy J. Wong, Gregory M. Dehouck, Erwin McAdam, Amy Sutter, Brad Millan, Maëva Banham, Steven G. Bedford, Candice C. Bristow, Thomas Fraeman, Abigail Vasavada, Ashwin R. Grotzinger, John Thompson, Lucy O’Connell‐Cooper, Catherine Gasda, Patrick Rudolph, Amanda Sullivan, Robert Arvidson, Ray Cousin, Agnes Horgan, Briony Stack, Kathryn M. Treiman, Allan Eigenbrode, Jennifer Caravaca, Gwénaël J Geophys Res Planets Research Article The Mars Science Laboratory rover, Curiosity, explored the clay mineral‐bearing Glen Torridon region for 1 Martian year between January 2019 and January 2021, including a short campaign onto the Greenheugh pediment. The Glen Torridon campaign sought to characterize the geology of the area, seek evidence of habitable environments, and document the onset of a potentially global climatic transition during the Hesperian era. Curiosity roved 5 km in total throughout Glen Torridon, from the Vera Rubin ridge to the northern margin of the Greenheugh pediment. Curiosity acquired samples from 11 drill holes during this campaign and conducted the first Martian thermochemolytic‐based organics detection experiment with the Sample Analysis at Mars instrument suite. The lowest elevations within Glen Torridon represent a continuation of lacustrine Murray formation deposits, but overlying widespread cross bedded sandstones indicate an interval of more energetic fluvial environments and prompted the definition of a new stratigraphic formation in the Mount Sharp group called the Carolyn Shoemaker formation. Glen Torridon hosts abundant phyllosilicates yet remains compositionally and mineralogically comparable to the rest of the Mount Sharp group. Glen Torridon samples have a great diversity and abundance of sulfur‐bearing organic molecules, which are consistent with the presence of ancient refractory organic matter. The Glen Torridon region experienced heterogeneous diagenesis, with the most striking alteration occurring just below the Siccar Point unconformity at the Greenheugh pediment. Results from the pediment campaign show that the capping sandstone formed within the Stimson Hesperian aeolian sand sea that experienced seasonal variations in wind direction. John Wiley and Sons Inc. 2022-12-30 2023-01 /pmc/articles/PMC10078523/ /pubmed/37034460 http://dx.doi.org/10.1029/2022JE007185 Text en © 2022 The Authors. California Institute of Technology. Government sponsorship acknowledged. This article has been contributed to by U.S. Government employees and their work is in the public domain in the USA. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Article
Bennett, Kristen A.
Fox, Valerie K.
Bryk, Alex
Dietrich, William
Fedo, Christopher
Edgar, Lauren
Thorpe, Michael T.
Williams, Amy J.
Wong, Gregory M.
Dehouck, Erwin
McAdam, Amy
Sutter, Brad
Millan, Maëva
Banham, Steven G.
Bedford, Candice C.
Bristow, Thomas
Fraeman, Abigail
Vasavada, Ashwin R.
Grotzinger, John
Thompson, Lucy
O’Connell‐Cooper, Catherine
Gasda, Patrick
Rudolph, Amanda
Sullivan, Robert
Arvidson, Ray
Cousin, Agnes
Horgan, Briony
Stack, Kathryn M.
Treiman, Allan
Eigenbrode, Jennifer
Caravaca, Gwénaël
The Curiosity Rover's Exploration of Glen Torridon, Gale Crater, Mars: An Overview of the Campaign and Scientific Results
title The Curiosity Rover's Exploration of Glen Torridon, Gale Crater, Mars: An Overview of the Campaign and Scientific Results
title_full The Curiosity Rover's Exploration of Glen Torridon, Gale Crater, Mars: An Overview of the Campaign and Scientific Results
title_fullStr The Curiosity Rover's Exploration of Glen Torridon, Gale Crater, Mars: An Overview of the Campaign and Scientific Results
title_full_unstemmed The Curiosity Rover's Exploration of Glen Torridon, Gale Crater, Mars: An Overview of the Campaign and Scientific Results
title_short The Curiosity Rover's Exploration of Glen Torridon, Gale Crater, Mars: An Overview of the Campaign and Scientific Results
title_sort curiosity rover's exploration of glen torridon, gale crater, mars: an overview of the campaign and scientific results
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10078523/
https://www.ncbi.nlm.nih.gov/pubmed/37034460
http://dx.doi.org/10.1029/2022JE007185
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