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Evidence for a Diagenetic Origin of Vera Rubin Ridge, Gale Crater, Mars: Summary and Synthesis of Curiosity's Exploration Campaign

This paper provides an overview of the Curiosity rover's exploration at Vera Rubin ridge (VRR) and summarizes the science results. VRR is a distinct geomorphic feature on lower Aeolis Mons (informally known as Mount Sharp) that was identified in orbital data based on its distinct texture, topog...

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Autores principales: Fraeman, A. A., Edgar, L. A., Rampe, E. B., Thompson, L. M., Frydenvang, J., Fedo, C. M., Catalano, J. G., Dietrich, W. E., Gabriel, T. S. J., Vasavada, A. R., Grotzinger, J. P., L'Haridon, J., Mangold, N., Sun, V. Z., House, C. H., Bryk, A. B., Hardgrove, C., Czarnecki, S., Stack, K. M., Morris, R. V., Arvidson, R. E., Banham, S. G., Bennett, K. A., Bridges, J. C., Edwards, C. S., Fischer, W. W., Fox, V. K., Gupta, S., Horgan, B. H. N., Jacob, S. R., Johnson, J. R., Johnson, S. S., Rubin, D. M., Salvatore, M. R., Schwenzer, S. P., Siebach, K. L., Stein, N. T., Turner, S. M. R., Wellington, D. F., Wiens, R. C., Williams, A. J., David, G., Wong, G. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7818385/
https://www.ncbi.nlm.nih.gov/pubmed/33520561
http://dx.doi.org/10.1029/2020JE006527
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author Fraeman, A. A.
Edgar, L. A.
Rampe, E. B.
Thompson, L. M.
Frydenvang, J.
Fedo, C. M.
Catalano, J. G.
Dietrich, W. E.
Gabriel, T. S. J.
Vasavada, A. R.
Grotzinger, J. P.
L'Haridon, J.
Mangold, N.
Sun, V. Z.
House, C. H.
Bryk, A. B.
Hardgrove, C.
Czarnecki, S.
Stack, K. M.
Morris, R. V.
Arvidson, R. E.
Banham, S. G.
Bennett, K. A.
Bridges, J. C.
Edwards, C. S.
Fischer, W. W.
Fox, V. K.
Gupta, S.
Horgan, B. H. N.
Jacob, S. R.
Johnson, J. R.
Johnson, S. S.
Rubin, D. M.
Salvatore, M. R.
Schwenzer, S. P.
Siebach, K. L.
Stein, N. T.
Turner, S. M. R.
Wellington, D. F.
Wiens, R. C.
Williams, A. J.
David, G.
Wong, G. M.
author_facet Fraeman, A. A.
Edgar, L. A.
Rampe, E. B.
Thompson, L. M.
Frydenvang, J.
Fedo, C. M.
Catalano, J. G.
Dietrich, W. E.
Gabriel, T. S. J.
Vasavada, A. R.
Grotzinger, J. P.
L'Haridon, J.
Mangold, N.
Sun, V. Z.
House, C. H.
Bryk, A. B.
Hardgrove, C.
Czarnecki, S.
Stack, K. M.
Morris, R. V.
Arvidson, R. E.
Banham, S. G.
Bennett, K. A.
Bridges, J. C.
Edwards, C. S.
Fischer, W. W.
Fox, V. K.
Gupta, S.
Horgan, B. H. N.
Jacob, S. R.
Johnson, J. R.
Johnson, S. S.
Rubin, D. M.
Salvatore, M. R.
Schwenzer, S. P.
Siebach, K. L.
Stein, N. T.
Turner, S. M. R.
Wellington, D. F.
Wiens, R. C.
Williams, A. J.
David, G.
Wong, G. M.
author_sort Fraeman, A. A.
collection PubMed
description This paper provides an overview of the Curiosity rover's exploration at Vera Rubin ridge (VRR) and summarizes the science results. VRR is a distinct geomorphic feature on lower Aeolis Mons (informally known as Mount Sharp) that was identified in orbital data based on its distinct texture, topographic expression, and association with a hematite spectral signature. Curiosity conducted extensive remote sensing observations, acquired data on dozens of contact science targets, and drilled three outcrop samples from the ridge, as well as one outcrop sample immediately below the ridge. Our observations indicate that strata composing VRR were deposited in a predominantly lacustrine setting and are part of the Murray formation. The rocks within the ridge are chemically in family with underlying Murray formation strata. Red hematite is dispersed throughout much of the VRR bedrock, and this is the source of the orbital spectral detection. Gray hematite is also present in isolated, gray‐colored patches concentrated toward the upper elevations of VRR, and these gray patches also contain small, dark Fe‐rich nodules. We propose that VRR formed when diagenetic event(s) preferentially hardened rocks, which were subsequently eroded into a ridge by wind. Diagenesis also led to enhanced crystallization and/or cementation that deepened the ferric‐related spectral absorptions on the ridge, which helped make them readily distinguishable from orbit. Results add to existing evidence of protracted aqueous environments at Gale crater and give new insight into how diagenesis shaped Mars' rock record.
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spelling pubmed-78183852021-01-29 Evidence for a Diagenetic Origin of Vera Rubin Ridge, Gale Crater, Mars: Summary and Synthesis of Curiosity's Exploration Campaign Fraeman, A. A. Edgar, L. A. Rampe, E. B. Thompson, L. M. Frydenvang, J. Fedo, C. M. Catalano, J. G. Dietrich, W. E. Gabriel, T. S. J. Vasavada, A. R. Grotzinger, J. P. L'Haridon, J. Mangold, N. Sun, V. Z. House, C. H. Bryk, A. B. Hardgrove, C. Czarnecki, S. Stack, K. M. Morris, R. V. Arvidson, R. E. Banham, S. G. Bennett, K. A. Bridges, J. C. Edwards, C. S. Fischer, W. W. Fox, V. K. Gupta, S. Horgan, B. H. N. Jacob, S. R. Johnson, J. R. Johnson, S. S. Rubin, D. M. Salvatore, M. R. Schwenzer, S. P. Siebach, K. L. Stein, N. T. Turner, S. M. R. Wellington, D. F. Wiens, R. C. Williams, A. J. David, G. Wong, G. M. J Geophys Res Planets Introduction to a Special Section This paper provides an overview of the Curiosity rover's exploration at Vera Rubin ridge (VRR) and summarizes the science results. VRR is a distinct geomorphic feature on lower Aeolis Mons (informally known as Mount Sharp) that was identified in orbital data based on its distinct texture, topographic expression, and association with a hematite spectral signature. Curiosity conducted extensive remote sensing observations, acquired data on dozens of contact science targets, and drilled three outcrop samples from the ridge, as well as one outcrop sample immediately below the ridge. Our observations indicate that strata composing VRR were deposited in a predominantly lacustrine setting and are part of the Murray formation. The rocks within the ridge are chemically in family with underlying Murray formation strata. Red hematite is dispersed throughout much of the VRR bedrock, and this is the source of the orbital spectral detection. Gray hematite is also present in isolated, gray‐colored patches concentrated toward the upper elevations of VRR, and these gray patches also contain small, dark Fe‐rich nodules. We propose that VRR formed when diagenetic event(s) preferentially hardened rocks, which were subsequently eroded into a ridge by wind. Diagenesis also led to enhanced crystallization and/or cementation that deepened the ferric‐related spectral absorptions on the ridge, which helped make them readily distinguishable from orbit. Results add to existing evidence of protracted aqueous environments at Gale crater and give new insight into how diagenesis shaped Mars' rock record. John Wiley and Sons Inc. 2020-12-23 2020-12 /pmc/articles/PMC7818385/ /pubmed/33520561 http://dx.doi.org/10.1029/2020JE006527 Text en ©2020. The Authors. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Introduction to a Special Section
Fraeman, A. A.
Edgar, L. A.
Rampe, E. B.
Thompson, L. M.
Frydenvang, J.
Fedo, C. M.
Catalano, J. G.
Dietrich, W. E.
Gabriel, T. S. J.
Vasavada, A. R.
Grotzinger, J. P.
L'Haridon, J.
Mangold, N.
Sun, V. Z.
House, C. H.
Bryk, A. B.
Hardgrove, C.
Czarnecki, S.
Stack, K. M.
Morris, R. V.
Arvidson, R. E.
Banham, S. G.
Bennett, K. A.
Bridges, J. C.
Edwards, C. S.
Fischer, W. W.
Fox, V. K.
Gupta, S.
Horgan, B. H. N.
Jacob, S. R.
Johnson, J. R.
Johnson, S. S.
Rubin, D. M.
Salvatore, M. R.
Schwenzer, S. P.
Siebach, K. L.
Stein, N. T.
Turner, S. M. R.
Wellington, D. F.
Wiens, R. C.
Williams, A. J.
David, G.
Wong, G. M.
Evidence for a Diagenetic Origin of Vera Rubin Ridge, Gale Crater, Mars: Summary and Synthesis of Curiosity's Exploration Campaign
title Evidence for a Diagenetic Origin of Vera Rubin Ridge, Gale Crater, Mars: Summary and Synthesis of Curiosity's Exploration Campaign
title_full Evidence for a Diagenetic Origin of Vera Rubin Ridge, Gale Crater, Mars: Summary and Synthesis of Curiosity's Exploration Campaign
title_fullStr Evidence for a Diagenetic Origin of Vera Rubin Ridge, Gale Crater, Mars: Summary and Synthesis of Curiosity's Exploration Campaign
title_full_unstemmed Evidence for a Diagenetic Origin of Vera Rubin Ridge, Gale Crater, Mars: Summary and Synthesis of Curiosity's Exploration Campaign
title_short Evidence for a Diagenetic Origin of Vera Rubin Ridge, Gale Crater, Mars: Summary and Synthesis of Curiosity's Exploration Campaign
title_sort evidence for a diagenetic origin of vera rubin ridge, gale crater, mars: summary and synthesis of curiosity's exploration campaign
topic Introduction to a Special Section
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7818385/
https://www.ncbi.nlm.nih.gov/pubmed/33520561
http://dx.doi.org/10.1029/2020JE006527
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