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Anomalously weak Labrador Sea convection and Atlantic overturning during the past 150 years

Authors :
Paola Moffa-Sanchez
Chris Brierley
Lloyd D Keigwin
Peter T. Spooner
Delia W Oppo
David Thornalley
Jon Robson
Ian Hall
Renee Davis
Igor Yashayaev
Neil L. Rose
Pablo Ortega
Source :
Nature, 2018, Vol.556(7700), pp.227-230 [Peer Reviewed Journal], Nature

Abstract

The Atlantic meridional overturning circulation (AMOC) is a system of ocean currents that has an essential role in Earth’s climate, redistributing heat and influencing the carbon cycle1, 2. The AMOC has been shown to be weakening in recent years1; this decline may reflect decadal-scale variability in convection in the Labrador Sea, but short observational datasets preclude a longer-term perspective on the modern state and variability of Labrador Sea convection and the AMOC1, 3,4,5. Here we provide several lines of palaeo-oceanographic evidence that Labrador Sea deep convection and the AMOC have been anomalously weak over the past 150 years or so (since the end of the Little Ice Age, LIA, approximately ad 1850) compared with the preceding 1,500 years. Our palaeoclimate reconstructions indicate that the transition occurred either as a predominantly abrupt shift towards the end of the LIA, or as a more gradual, continued decline over the past 150 years; this ambiguity probably arises from non-AMOC influences on the various proxies or from the different sensitivities of these proxies to individual components of the AMOC. We suggest that enhanced freshwater fluxes from the Arctic and Nordic seas towards the end of the LIA—sourced from melting glaciers and thickened sea ice that developed earlier in the LIA—weakened Labrador Sea convection and the AMOC. The lack of a subsequent recovery may have resulted from hysteresis or from twentieth-century melting of the Greenland Ice Sheet6. Our results suggest that recent decadal variability in Labrador Sea convection and the AMOC has occurred during an atypical, weak background state. Future work should aim to constrain the roles of internal climate variability and early anthropogenic forcing in the AMOC weakening described here.

Details

Language :
English
ISSN :
14764687 and 00280836
Volume :
556
Issue :
7700
Database :
OpenAIRE
Journal :
Nature
Accession number :
edsair.doi.dedup.....e71a2e9596424f8dbe4777a1f963ef0d
Full Text :
https://doi.org/10.1038/s41586-018-0007-4