Subpolar North Atlantic western boundary density anomalies and the Meridional Overturning Circulation

dc.contributor.author Li, Feili
dc.contributor.author Lozier, M. Susan
dc.contributor.author Bacon, Sheldon
dc.contributor.author Bower, Amy S.
dc.contributor.author Cunningham, Stuart A.
dc.contributor.author de Jong, Marieke F.
dc.contributor.author deYoung, Brad
dc.contributor.author Fraser, Neil
dc.contributor.author Fried, Nora
dc.contributor.author Han, Guoqi
dc.contributor.author Holliday, Naomi Penny
dc.contributor.author Holte, James W.
dc.contributor.author Houpert, Loïc
dc.contributor.author Inall, Mark E.
dc.contributor.author Johns, William E.
dc.contributor.author Jones, Sam
dc.contributor.author Johnson, Clare
dc.contributor.author Karstensen, Johannes
dc.contributor.author Le Bras, Isabela A.
dc.contributor.author Lherminier, Pascale
dc.contributor.author Lin, Xiaopei
dc.contributor.author Mercier, Herlé
dc.contributor.author Oltmanns, Marilena
dc.contributor.author Pacini, Astrid
dc.contributor.author Petit, Tillys
dc.contributor.author Pickart, Robert S.
dc.contributor.author Rayner, Darren
dc.contributor.author Straneo, Fiamma
dc.contributor.author Thierry, Virginie
dc.contributor.author Visbeck, Martin
dc.contributor.author Yashayaev, Igor
dc.contributor.author Zhou, Chun
dc.date.accessioned 2021-08-17T20:28:50Z
dc.date.available 2021-08-17T20:28:50Z
dc.date.issued 2021-05-24
dc.description © The Author(s), 2021. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Li, F., Lozier, M. S., Bacon, S., Bower, A. S., Cunningham, S. A., de Jong, M. F., DeYoung, B., Fraser, N., Fried, N., Han, G., Holliday, N. P., Holte, J., Houpert, L., Inall, M. E., Johns, W. E., Jones, S., Johnson, C., Karstensen, J., Le Bras, I. A., P. Lherminier, X. Lin, H. Mercier, M. Oltmanns, A. Pacini, T. Petit, R. S. Pickart, D. Rayner, F. Straneo, V. Thierry, M. Visbeck, I. Yashayaev & Zhou, C. Subpolar North Atlantic western boundary density anomalies and the Meridional Overturning Circulation. Nature Communications, 12(1), (2021): 3002, https://doi.org/10.1038/s41467-021-23350-2. en_US
dc.description.abstract Changes in the Atlantic Meridional Overturning Circulation, which have the potential to drive societally-important climate impacts, have traditionally been linked to the strength of deep water formation in the subpolar North Atlantic. Yet there is neither clear observational evidence nor agreement among models about how changes in deep water formation influence overturning. Here, we use data from a trans-basin mooring array (OSNAP—Overturning in the Subpolar North Atlantic Program) to show that winter convection during 2014–2018 in the interior basin had minimal impact on density changes in the deep western boundary currents in the subpolar basins. Contrary to previous modeling studies, we find no discernable relationship between western boundary changes and subpolar overturning variability over the observational time scales. Our results require a reconsideration of the notion of deep western boundary changes representing overturning characteristics, with implications for constraining the source of overturning variability within and downstream of the subpolar region. en_US
dc.description.sponsorship We acknowledge funding from the Physical Oceanography Program of the U.S. National Science Foundation (OCE-1259398, OCE-1756231, OCE-1948335); the U.K. Natural Environment Research Council (NERC) National Capability programs the Extended Ellett Line and CLASS (NE/R015953/1), and NERC grants UK-OSNAP (NE/K010875/1, NE/K010875/2, NE/K010700/1) and U.K. OSNAP Decade (NE/T00858X/1, NE/T008938/1). Additional support was received from the European Union 7th Framework Program (FP7 2007-2013) under grant 308299 (NACLIM), the Horizon 2020 research and innovation program under grants 727852 (Blue-Action), 862626 (EuroSea). We also acknowledge support from the Royal Netherlands Institute for Sea Research, the Surface Water and Ocean Topography-Canada (SWOT-C), Canadian Space Agency, the Aquatic Climate Change Adaptation Services Program (ACCASP), Fisheries and Oceans Canada, an Natural Sciences and Engineering Research Council of Canada (NSERC) Discovery Grant, and from the China’s national key research and development projects (2016YFA0601803), the National Natural Science Foundation of China (41925025) and the Fundamental Research Funds for the Central Universities (201424001). Support for the 53°N array by the RACE program of the German Ministry BMBF is acknowledged, as is the contribution from Fisheries and Oceans Canada’s Atlantic Zone Monitoring Program. en_US
dc.identifier.citation Li, F., Lozier, M. S., Bacon, S., Bower, A. S., Cunningham, S. A., de Jong, M. F., DeYoung, B., Fraser, N., Fried, N., Han, G., Holliday, N. P., Holte, J., Houpert, L., Inall, M. E., Johns, W. E., Jones, S., Johnson, C., Karstensen, J., Le Bras, I. A., P. Lherminier, X. Lin, H. Mercier, M. Oltmanns, A. Pacini, T. Petit, R. S. Pickart, D. Rayner, F. Straneo, V. Thierry, M. Visbeck, I. Yashayaev & Zhou, C. (2021). Subpolar North Atlantic western boundary density anomalies and the Meridional Overturning Circulation. Nature Communications, 12(1), 3002. en_US
dc.identifier.doi 10.1038/s41467-021-23350-2
dc.identifier.uri https://hdl.handle.net/1912/27451
dc.publisher Nature Research en_US
dc.relation.uri https://doi.org/10.1038/s41467-021-23350-2
dc.rights Attribution 4.0 International *
dc.rights.uri http://creativecommons.org/licenses/by/4.0/ *
dc.title Subpolar North Atlantic western boundary density anomalies and the Meridional Overturning Circulation en_US
dc.type Article en_US
dspace.entity.type Publication
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