Millennial climate oscillations controlled the structure and evolution of Termination II

Peer reviewed The controls that affect the structure and timing of terminations are still poorly understood. We studied a tufa deposit from the Iberian Peninsula that covers Termination II (T-II) and whose chronology was synchronized to speleothem records. We used the same chronology to synchronize...

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Bibliographic Details
Main Authors: Domínguez Villar, David, Vázquez Navarro, Juan A., Krklec, Kristina, Lojen, Sonja, López Sáez, José Antonio, Dorado Valiño, Miriam, Fairchild, Ian J.
Other Authors: European Commission, López Sáez, José Antonio 0000-0002-3122-2744, Domínguez Villar, David 0000-0002-4730-6053, Krklec, Kristina 0000-0003-1747-2883, Fairchild, Ian J. 0000-0003-4822-2895
Format: Article in Journal/Newspaper
Language:English
Published: Nature Publishing Group 2021
Subjects:
geo
Online Access:http://hdl.handle.net/10261/229858
Description
Summary:Peer reviewed The controls that affect the structure and timing of terminations are still poorly understood. We studied a tufa deposit from the Iberian Peninsula that covers Termination II (T-II) and whose chronology was synchronized to speleothem records. We used the same chronology to synchronize ocean sediments from the North Atlantic to correlate major climate events in a common timescale. We identify two stages within T-II. The first stage started with the increase of boreal summer integrated solar insolation, and during this stage three millennial climate oscillations were recorded. These oscillations resulted from complex ocean–atmosphere interactions in the Nordic seas, caused by the progressive decay of Northern Hemisphere ice-sheets. The second stage commenced after a glacial outburst that caused the collapse of the Thermohaline Circulation, a massive Heinrich event, and the onset of the Bipolar Seesaw Mechanism (BSM) that eventually permitted the completion of T-II. The pace of the millennial oscillations during the first stage of T-II controlled the onset of the second stage, when the termination became a non-reversible and global phenomenon that accelerated the deglaciation. During the last the two terminations, the BSM was triggered by different detailed climate interactions, which suggests the occurrence of different modes of terminations. The Junta de Comunidades de Castilla-La Mancha provided the permissions to sample in Trabaque Canyon. Tis research received funding from the European Community under the Marie Curie IEF of the FP7/2007-2013 (Grant agreement no. 219891: PROCAVET project, awarded to D.D.-V.). Publication was supported by the Open Access Publication Fund of the University of Zagreb Faculty of Agriculture