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海因里希事件2期间的大气-冰-海洋耦合动力学

Coupled atmosphere-ice-ocean dynamics during Heinrich Stadial 2.

作者信息

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, Lawrence Edwards R, Cheng Hai

机构信息

Institute of Global Environmental Change, Xi'an Jiaotong University, Xi'an, 710049, China.

Physics of Ice, Climate and Earth, Niels Bohr Institute, University of Copenhagen, Copenhagen, 2100, Denmark.

出版信息

Nat Commun. 2022 Oct 4;13(1):5867. doi: 10.1038/s41467-022-33583-4.

Abstract

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.

摘要

我们对千年尺度事件期间气候动态的理解并不完整,部分原因是缺乏在各种边界条件下对其精确的阶段分析。在此,我们展示了来自中低纬度季风区的九个洞穴氧同位素记录,其年龄精度达到亚百年,分辨率为多年,涵盖了末次盛冰期发生的千年尺度事件——海因里希事件2(HS2)。我们的数据表明,格陵兰和南极冰芯年代学分别需要+320年和+400年的校正,这得到了现有火山证据和放射性碳年代的支持。我们的年代学框架显示,HS2在全球范围内同步开始。我们的记录精确地刻画了在HS2开始时叠加在传统“两极跷跷板”上的百年尺度的突然“热带大气跷跷板”,这意味着低纬度水文气候有独特的响应/反馈。结合我们对HS2结束时南美季风早期转变的观测,我们认为低纬度水文气候动态在千年事件中所起的作用比之前认为的更为活跃。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83b9/9532435/67563ed983a3/41467_2022_33583_Fig1_HTML.jpg

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