Coupled atmosphere-ice-ocean dynamics during Heinrich Stadial 2

Author:

Dong XiyuORCID,Kathayat Gayatri,Rasmussen Sune O.ORCID,Svensson AndersORCID,Severinghaus Jeffrey P.,Li Hanying,Sinha AshishORCID,Xu Yao,Zhang HaiweiORCID,Shi Zhengguo,Cai YanjunORCID,Pérez-Mejías Carlos,Baker JonathanORCID,Zhao Jingyao,Spötl ChristophORCID,Columbu AndreaORCID,Ning Youfeng,Stríkis Nicolás M.ORCID,Chen Shitao,Wang XianfengORCID,Gupta Anil K.,Dutt Som,Zhang Fan,Cruz Francisco W.,An ZhishengORCID,Lawrence Edwards R.,Cheng HaiORCID

Abstract

AbstractOur understanding of climate dynamics during millennial-scale events is incomplete, partially due to the lack of their precise phase analyses under various boundary conditions. Here we present nine speleothem oxygen-isotope records from mid-to-low-latitude monsoon regimes with sub-centennial age precision and multi-annual resolution, spanning the Heinrich Stadial 2 (HS2) — a millennial-scale event that occurred at the Last Glacial Maximum. Our data suggests that the Greenland and Antarctic ice-core chronologies require +320- and +400-year adjustments, respectively, supported by extant volcanic evidence and radiocarbon ages. Our chronological framework shows a synchronous HS2 onset globally. Our records precisely characterize a centennial-scale abrupt “tropical atmospheric seesaw” superimposed on the conventional “bipolar seesaw” at the beginning of HS2, implying a unique response/feedback from low-latitude hydroclimate. Together with our observation of an early South American monsoon shift at the HS2 termination, we suggest a more active role of low-latitude hydroclimate dynamics underlying millennial events than previously thought.

Funder

National Science Foundation of China | National Natural Science Foundation of China-Yunnan Joint Fund

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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