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West Antarctic Ice Sheet retreat driven by Holocene warm water incursions

Glaciological and oceanographic observations coupled with numerical models show that warm Circumpolar Deep Water (CDW) upwelling onto the West Antarctic continental shelf causes melting of the undersides of floating ice shelves. Because these ice shelves buttress glaciers feeding into them, their oc...

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Autores principales: Hillenbrand, Claus-Dieter, Smith, James A., Hodell, David A., Greaves, Mervyn, Poole, Christopher R., Kender, Sev, Williams, Mark, Andersen, Thorbjørn Joest, Jernas, Patrycja E., Elderfield, Henry, Klages, Johann P., Roberts, Stephen J., Gohl, Karsten, Larter, Robert D., Kuhn, Gerhard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5510715/
https://www.ncbi.nlm.nih.gov/pubmed/28682333
http://dx.doi.org/10.1038/nature22995
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author Hillenbrand, Claus-Dieter
Smith, James A.
Hodell, David A.
Greaves, Mervyn
Poole, Christopher R.
Kender, Sev
Williams, Mark
Andersen, Thorbjørn Joest
Jernas, Patrycja E.
Elderfield, Henry
Klages, Johann P.
Roberts, Stephen J.
Gohl, Karsten
Larter, Robert D.
Kuhn, Gerhard
author_facet Hillenbrand, Claus-Dieter
Smith, James A.
Hodell, David A.
Greaves, Mervyn
Poole, Christopher R.
Kender, Sev
Williams, Mark
Andersen, Thorbjørn Joest
Jernas, Patrycja E.
Elderfield, Henry
Klages, Johann P.
Roberts, Stephen J.
Gohl, Karsten
Larter, Robert D.
Kuhn, Gerhard
author_sort Hillenbrand, Claus-Dieter
collection PubMed
description Glaciological and oceanographic observations coupled with numerical models show that warm Circumpolar Deep Water (CDW) upwelling onto the West Antarctic continental shelf causes melting of the undersides of floating ice shelves. Because these ice shelves buttress glaciers feeding into them, their ocean-induced thinning is driving Antarctic ice-sheet loss today. Here we present the first multi-proxy data based reconstruction of variability in CDW inflow to the Amundsen Sea sector, the most vulnerable part of the West Antarctic Ice Sheet, during the last 11,000 years. The chemical composition of foraminifer shells and benthic foraminifer assemblages in marine sediments indicate that enhanced CDW upwelling, controlled by the latitudinal position of the Southern Hemisphere westerly winds, forced deglaciation of this sector both until 7,500 years ago, when an ice-shelf collapse may have caused rapid ice-sheet thinning further upstream, and since the 1940s. These results increase confidence in the predictive capability of current ice-sheet models.
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spelling pubmed-55107152018-01-05 West Antarctic Ice Sheet retreat driven by Holocene warm water incursions Hillenbrand, Claus-Dieter Smith, James A. Hodell, David A. Greaves, Mervyn Poole, Christopher R. Kender, Sev Williams, Mark Andersen, Thorbjørn Joest Jernas, Patrycja E. Elderfield, Henry Klages, Johann P. Roberts, Stephen J. Gohl, Karsten Larter, Robert D. Kuhn, Gerhard Nature Article Glaciological and oceanographic observations coupled with numerical models show that warm Circumpolar Deep Water (CDW) upwelling onto the West Antarctic continental shelf causes melting of the undersides of floating ice shelves. Because these ice shelves buttress glaciers feeding into them, their ocean-induced thinning is driving Antarctic ice-sheet loss today. Here we present the first multi-proxy data based reconstruction of variability in CDW inflow to the Amundsen Sea sector, the most vulnerable part of the West Antarctic Ice Sheet, during the last 11,000 years. The chemical composition of foraminifer shells and benthic foraminifer assemblages in marine sediments indicate that enhanced CDW upwelling, controlled by the latitudinal position of the Southern Hemisphere westerly winds, forced deglaciation of this sector both until 7,500 years ago, when an ice-shelf collapse may have caused rapid ice-sheet thinning further upstream, and since the 1940s. These results increase confidence in the predictive capability of current ice-sheet models. 2017-07-05 /pmc/articles/PMC5510715/ /pubmed/28682333 http://dx.doi.org/10.1038/nature22995 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Hillenbrand, Claus-Dieter
Smith, James A.
Hodell, David A.
Greaves, Mervyn
Poole, Christopher R.
Kender, Sev
Williams, Mark
Andersen, Thorbjørn Joest
Jernas, Patrycja E.
Elderfield, Henry
Klages, Johann P.
Roberts, Stephen J.
Gohl, Karsten
Larter, Robert D.
Kuhn, Gerhard
West Antarctic Ice Sheet retreat driven by Holocene warm water incursions
title West Antarctic Ice Sheet retreat driven by Holocene warm water incursions
title_full West Antarctic Ice Sheet retreat driven by Holocene warm water incursions
title_fullStr West Antarctic Ice Sheet retreat driven by Holocene warm water incursions
title_full_unstemmed West Antarctic Ice Sheet retreat driven by Holocene warm water incursions
title_short West Antarctic Ice Sheet retreat driven by Holocene warm water incursions
title_sort west antarctic ice sheet retreat driven by holocene warm water incursions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5510715/
https://www.ncbi.nlm.nih.gov/pubmed/28682333
http://dx.doi.org/10.1038/nature22995
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