Cargando…

Antarctic ice sheet discharge driven by atmosphere-ocean feedbacks at the Last Glacial Termination

Reconstructing the dynamic response of the Antarctic ice sheets to warming during the Last Glacial Termination (LGT; 18,000–11,650 yrs ago) allows us to disentangle ice-climate feedbacks that are key to improving future projections. Whilst the sequence of events during this period is reasonably well...

Descripción completa

Detalles Bibliográficos
Autores principales: Fogwill, C. J., Turney, C. S. M., Golledge, N. R., Etheridge, D. M., Rubino, M., Thornton, D. P., Baker, A., Woodward, J., Winter, K., van Ommen, T. D., Moy, A. D., Curran, M. A. J., Davies, S. M., Weber, M. E., Bird, M. I., Munksgaard, N. C., Menviel, L., Rootes, C. M., Ellis, B., Millman, H., Vohra, J., Rivera, A., Cooper, A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5215443/
https://www.ncbi.nlm.nih.gov/pubmed/28054598
http://dx.doi.org/10.1038/srep39979
_version_ 1782491761575198720
author Fogwill, C. J.
Turney, C. S. M.
Golledge, N. R.
Etheridge, D. M.
Rubino, M.
Thornton, D. P.
Baker, A.
Woodward, J.
Winter, K.
van Ommen, T. D.
Moy, A. D.
Curran, M. A. J.
Davies, S. M.
Weber, M. E.
Bird, M. I.
Munksgaard, N. C.
Menviel, L.
Rootes, C. M.
Ellis, B.
Millman, H.
Vohra, J.
Rivera, A.
Cooper, A.
author_facet Fogwill, C. J.
Turney, C. S. M.
Golledge, N. R.
Etheridge, D. M.
Rubino, M.
Thornton, D. P.
Baker, A.
Woodward, J.
Winter, K.
van Ommen, T. D.
Moy, A. D.
Curran, M. A. J.
Davies, S. M.
Weber, M. E.
Bird, M. I.
Munksgaard, N. C.
Menviel, L.
Rootes, C. M.
Ellis, B.
Millman, H.
Vohra, J.
Rivera, A.
Cooper, A.
author_sort Fogwill, C. J.
collection PubMed
description Reconstructing the dynamic response of the Antarctic ice sheets to warming during the Last Glacial Termination (LGT; 18,000–11,650 yrs ago) allows us to disentangle ice-climate feedbacks that are key to improving future projections. Whilst the sequence of events during this period is reasonably well-known, relatively poor chronological control has precluded precise alignment of ice, atmospheric and marine records, making it difficult to assess relationships between Antarctic ice-sheet (AIS) dynamics, climate change and sea level. Here we present results from a highly-resolved ‘horizontal ice core’ from the Weddell Sea Embayment, which records millennial-scale AIS dynamics across this extensive region. Counterintuitively, we find AIS mass-loss across the full duration of the Antarctic Cold Reversal (ACR; 14,600–12,700 yrs ago), with stabilisation during the subsequent millennia of atmospheric warming. Earth-system and ice-sheet modelling suggests these contrasting trends were likely Antarctic-wide, sustained by feedbacks amplified by the delivery of Circumpolar Deep Water onto the continental shelf. Given the anti-phase relationship between inter-hemispheric climate trends across the LGT our findings demonstrate that Southern Ocean-AIS feedbacks were controlled by global atmospheric teleconnections. With increasing stratification of the Southern Ocean and intensification of mid-latitude westerly winds today, such teleconnections could amplify AIS mass loss and accelerate global sea-level rise.
format Online
Article
Text
id pubmed-5215443
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-52154432017-01-09 Antarctic ice sheet discharge driven by atmosphere-ocean feedbacks at the Last Glacial Termination Fogwill, C. J. Turney, C. S. M. Golledge, N. R. Etheridge, D. M. Rubino, M. Thornton, D. P. Baker, A. Woodward, J. Winter, K. van Ommen, T. D. Moy, A. D. Curran, M. A. J. Davies, S. M. Weber, M. E. Bird, M. I. Munksgaard, N. C. Menviel, L. Rootes, C. M. Ellis, B. Millman, H. Vohra, J. Rivera, A. Cooper, A. Sci Rep Article Reconstructing the dynamic response of the Antarctic ice sheets to warming during the Last Glacial Termination (LGT; 18,000–11,650 yrs ago) allows us to disentangle ice-climate feedbacks that are key to improving future projections. Whilst the sequence of events during this period is reasonably well-known, relatively poor chronological control has precluded precise alignment of ice, atmospheric and marine records, making it difficult to assess relationships between Antarctic ice-sheet (AIS) dynamics, climate change and sea level. Here we present results from a highly-resolved ‘horizontal ice core’ from the Weddell Sea Embayment, which records millennial-scale AIS dynamics across this extensive region. Counterintuitively, we find AIS mass-loss across the full duration of the Antarctic Cold Reversal (ACR; 14,600–12,700 yrs ago), with stabilisation during the subsequent millennia of atmospheric warming. Earth-system and ice-sheet modelling suggests these contrasting trends were likely Antarctic-wide, sustained by feedbacks amplified by the delivery of Circumpolar Deep Water onto the continental shelf. Given the anti-phase relationship between inter-hemispheric climate trends across the LGT our findings demonstrate that Southern Ocean-AIS feedbacks were controlled by global atmospheric teleconnections. With increasing stratification of the Southern Ocean and intensification of mid-latitude westerly winds today, such teleconnections could amplify AIS mass loss and accelerate global sea-level rise. Nature Publishing Group 2017-01-05 /pmc/articles/PMC5215443/ /pubmed/28054598 http://dx.doi.org/10.1038/srep39979 Text en Copyright © 2017, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Fogwill, C. J.
Turney, C. S. M.
Golledge, N. R.
Etheridge, D. M.
Rubino, M.
Thornton, D. P.
Baker, A.
Woodward, J.
Winter, K.
van Ommen, T. D.
Moy, A. D.
Curran, M. A. J.
Davies, S. M.
Weber, M. E.
Bird, M. I.
Munksgaard, N. C.
Menviel, L.
Rootes, C. M.
Ellis, B.
Millman, H.
Vohra, J.
Rivera, A.
Cooper, A.
Antarctic ice sheet discharge driven by atmosphere-ocean feedbacks at the Last Glacial Termination
title Antarctic ice sheet discharge driven by atmosphere-ocean feedbacks at the Last Glacial Termination
title_full Antarctic ice sheet discharge driven by atmosphere-ocean feedbacks at the Last Glacial Termination
title_fullStr Antarctic ice sheet discharge driven by atmosphere-ocean feedbacks at the Last Glacial Termination
title_full_unstemmed Antarctic ice sheet discharge driven by atmosphere-ocean feedbacks at the Last Glacial Termination
title_short Antarctic ice sheet discharge driven by atmosphere-ocean feedbacks at the Last Glacial Termination
title_sort antarctic ice sheet discharge driven by atmosphere-ocean feedbacks at the last glacial termination
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5215443/
https://www.ncbi.nlm.nih.gov/pubmed/28054598
http://dx.doi.org/10.1038/srep39979
work_keys_str_mv AT fogwillcj antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT turneycsm antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT golledgenr antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT etheridgedm antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT rubinom antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT thorntondp antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT bakera antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT woodwardj antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT winterk antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT vanommentd antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT moyad antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT curranmaj antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT daviessm antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT weberme antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT birdmi antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT munksgaardnc antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT menviell antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT rootescm antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT ellisb antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT millmanh antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT vohraj antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT riveraa antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination
AT coopera antarcticicesheetdischargedrivenbyatmosphereoceanfeedbacksatthelastglacialtermination