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Evidence for a three-phase sequence during Heinrich Stadial 4 using a multiproxy approach based on Greenland ice core records

Authors :
Guillevic, M.
Bazin, L.
Landais, A.
Stowasser, C.
Masson-delmotte, V.
Blunier, T.
Eynaud, F.
Falourd, S.
Michel, E.
Minster, B.
Popp, T.
Prie, F.
Vinther, M.
Guillevic, M.
Bazin, L.
Landais, A.
Stowasser, C.
Masson-delmotte, V.
Blunier, T.
Eynaud, F.
Falourd, S.
Michel, E.
Minster, B.
Popp, T.
Prie, F.
Vinther, M.
Source :
Climate Of The Past (1814-9324) (Copernicus Gesellschaft Mbh), 2014-12-02 , Vol. 10 , N. 6 , P. 2115-2133
Publication Year :
2014

Abstract

Glacial climate was characterised by two types of abrupt events. Greenland ice cores record Dansgaard–Oeschger events, marked by abrupt warming in-between cold, stadial phases. Six of these stadials appear related to major Heinrich events (HEs), identified from ice-rafted debris (IRD) and large excursions in carbon- and oxygen-stable isotopic ratios in North Atlantic deep sea sediments, documenting major ice sheet collapse events. This finding has led to the paradigm that glacial cold events are induced by the response of the Atlantic Meridional Overturning Circulation to such massive freshwater inputs, supported by sensitivity studies conducted with climate models of various complexities. These models also simulate synchronous Greenland temperature and lower-latitude hydrological changes.

Details

Database :
OAIster
Journal :
Climate Of The Past (1814-9324) (Copernicus Gesellschaft Mbh), 2014-12-02 , Vol. 10 , N. 6 , P. 2115-2133
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1409511894
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.5194.cp-10-2115-2014