Coupled atmosphere-ice-ocean dynamics during Heinrich Stadial 2

Our 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 pre...

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Main Authors: Dong, Xiyu, Kathayat, Gayatri, Rasmussen, Sune O., Svensson, Anders, Severinghaus, Jeffrey P., Li, Hanying, Sinha, Ashish, Xu, Yao, Zhang, Haiwei, Shi, Zhengguo, Cai, Yanjun, Pérez-Mejías, Carlos, Baker, Jonathan, Zhao, Jingyao, Spötl, Christoph, Columbu, Andrea, Ning, Youfeng, Stríkis, Nicolás M., Chen, Shitao, Wang, Xianfeng, Gupta, Anil K., Dutt, Som, Zhang, Fan, Cruz, Francisco W., An, Zhisheng, Edwards, R. Lawrence, Cheng, Hai
Other Authors: Asian School of the Environment
Format: Article
Language:English
Published: 2023
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Online Access:https://hdl.handle.net/10356/170825
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spelling sg-ntu-dr.10356-1708252023-10-10T15:36:31Z Coupled atmosphere-ice-ocean dynamics during Heinrich Stadial 2 Dong, Xiyu Kathayat, Gayatri Rasmussen, Sune O. Svensson, Anders Severinghaus, Jeffrey P. Li, Hanying Sinha, Ashish Xu, Yao Zhang, Haiwei Shi, Zhengguo Cai, Yanjun Pérez-Mejías, Carlos Baker, Jonathan Zhao, Jingyao Spötl, Christoph Columbu, Andrea Ning, Youfeng Stríkis, Nicolás M. Chen, Shitao Wang, Xianfeng Gupta, Anil K. Dutt, Som Zhang, Fan Cruz, Francisco W. An, Zhisheng Edwards, R. Lawrence Cheng, Hai Asian School of the Environment Earth Observatory of Singapore Social sciences::Geography::Environmental sciences Heinrich Event Oxygen Isotope Our 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. Published version This work was supported by the National Nature Science Foundation of China (NSFC grants 41731174, 41888101, and 42150710534 to H.C., NSFC grants 41703007 and 42172201 to G.K.), the Strategic Priority Research Program of the Chinese Academy of Sciences (Grant No. XDB 40000000) to Z.A., the FAPESP 2017/50085-3 to F.W.C., and the Carlsberg Foundation via the grant to SOR’s ChronoClimate project. 2023-10-08T06:35:13Z 2023-10-08T06:35:13Z 2022 Journal Article Dong, X., Kathayat, G., Rasmussen, S. O., Svensson, A., Severinghaus, J. P., Li, H., Sinha, A., Xu, Y., Zhang, H., Shi, Z., Cai, Y., Pérez-Mejías, C., Baker, J., Zhao, J., Spötl, C., Columbu, A., Ning, Y., Stríkis, N. M., Chen, S., ...Cheng, H. (2022). Coupled atmosphere-ice-ocean dynamics during Heinrich Stadial 2. Nature Communications, 13(1), 5867-. https://dx.doi.org/10.1038/s41467-022-33583-4 2041-1723 https://hdl.handle.net/10356/170825 10.1038/s41467-022-33583-4 36195764 2-s2.0-85139365482 1 13 5867 en Nature Communications © 2022 The Author(s). This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Social sciences::Geography::Environmental sciences
Heinrich Event
Oxygen Isotope
spellingShingle Social sciences::Geography::Environmental sciences
Heinrich Event
Oxygen Isotope
Dong, Xiyu
Kathayat, Gayatri
Rasmussen, Sune O.
Svensson, Anders
Severinghaus, Jeffrey P.
Li, Hanying
Sinha, Ashish
Xu, Yao
Zhang, Haiwei
Shi, Zhengguo
Cai, Yanjun
Pérez-Mejías, Carlos
Baker, Jonathan
Zhao, Jingyao
Spötl, Christoph
Columbu, Andrea
Ning, Youfeng
Stríkis, Nicolás M.
Chen, Shitao
Wang, Xianfeng
Gupta, Anil K.
Dutt, Som
Zhang, Fan
Cruz, Francisco W.
An, Zhisheng
Edwards, R. Lawrence
Cheng, Hai
Coupled atmosphere-ice-ocean dynamics during Heinrich Stadial 2
description Our 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.
author2 Asian School of the Environment
author_facet Asian School of the Environment
Dong, Xiyu
Kathayat, Gayatri
Rasmussen, Sune O.
Svensson, Anders
Severinghaus, Jeffrey P.
Li, Hanying
Sinha, Ashish
Xu, Yao
Zhang, Haiwei
Shi, Zhengguo
Cai, Yanjun
Pérez-Mejías, Carlos
Baker, Jonathan
Zhao, Jingyao
Spötl, Christoph
Columbu, Andrea
Ning, Youfeng
Stríkis, Nicolás M.
Chen, Shitao
Wang, Xianfeng
Gupta, Anil K.
Dutt, Som
Zhang, Fan
Cruz, Francisco W.
An, Zhisheng
Edwards, R. Lawrence
Cheng, Hai
format Article
author Dong, Xiyu
Kathayat, Gayatri
Rasmussen, Sune O.
Svensson, Anders
Severinghaus, Jeffrey P.
Li, Hanying
Sinha, Ashish
Xu, Yao
Zhang, Haiwei
Shi, Zhengguo
Cai, Yanjun
Pérez-Mejías, Carlos
Baker, Jonathan
Zhao, Jingyao
Spötl, Christoph
Columbu, Andrea
Ning, Youfeng
Stríkis, Nicolás M.
Chen, Shitao
Wang, Xianfeng
Gupta, Anil K.
Dutt, Som
Zhang, Fan
Cruz, Francisco W.
An, Zhisheng
Edwards, R. Lawrence
Cheng, Hai
author_sort Dong, Xiyu
title Coupled atmosphere-ice-ocean dynamics during Heinrich Stadial 2
title_short Coupled atmosphere-ice-ocean dynamics during Heinrich Stadial 2
title_full Coupled atmosphere-ice-ocean dynamics during Heinrich Stadial 2
title_fullStr Coupled atmosphere-ice-ocean dynamics during Heinrich Stadial 2
title_full_unstemmed Coupled atmosphere-ice-ocean dynamics during Heinrich Stadial 2
title_sort coupled atmosphere-ice-ocean dynamics during heinrich stadial 2
publishDate 2023
url https://hdl.handle.net/10356/170825
_version_ 1781793752816287744