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Possible obliquity-forced warmth in southern Asia during the last glacial stage

  • Cheng Zhao
  • , Eelco J. Rohling
  • , Zhengyu Liu
  • , Xiaoqiang Yang
  • , Enlou Zhang
  • , Jun Cheng
  • , Zhonghui Liu
  • , Zhisheng An
  • , Xiangdong Yang
  • , Xiaoping Feng
  • , Xiaoshuang Sun
  • , Can Zhang
  • , Tianlong Yan
  • , Hao Long
  • , Hong Yan
  • , Zicheng Yu
  • , Weiguo Liu
  • , Shi Yong Yu
  • , Ji Shen
  • CAS - Nanjing Institute of Geography and Limnology
  • Chinese Academy of Sciences
  • Nanjing University
  • Australian National University
  • University of Southampton
  • Ohio State University
  • Sun Yat-Sen University
  • Nanjing University of Information Science & Technology
  • The University of Hong Kong
  • CAS - Institute of Earth Environment
  • Lehigh University
  • Northeast Normal University
  • Jiangsu Normal University

Research output: Contribution to journalArticlepeer-review

153 Scopus citations

Abstract

Orbital-scale global climatic changes during the late Quaternary are dominated by high-latitude influenced ~100,000-year global ice-age cycles and monsoon influenced ~23,000-year low-latitude hydroclimate variations. However, the shortage of highly-resolved land temperature records remains a limiting factor for achieving a comprehensive understanding of long-term low-latitude terrestrial climatic changes. Here, we report paired mean annual air temperature (MAAT) and monsoon intensity proxy records over the past 88,000 years from Lake Tengchongqinghai in southwestern China. While summer monsoon intensity follows the ~23,000-year precession beat found also in previous studies, we identify previously unrecognized warm periods at 88,000–71,000 and 45,000–22,000 years ago, with 2–3 °C amplitudes that are close to our recorded full glacial-interglacial range. Using advanced transient climate simulations and comparing with forcing factors, we find that these warm periods in our MAAT record probably depends on local annual mean insolation, which is controlled by Earth's ~41,000-year obliquity cycles and is anti-phased to annual mean insolation at high latitudes. The coincidence of our identified warm periods and intervals of high-frequent dated archaeological evidence highlights the importance of temperature on anatomically modern humans in Asia during the last glacial stage.

Original languageEnglish
Pages (from-to)1136-1145
Number of pages10
JournalScience Bulletin
Volume66
Issue number11
DOIs
StatePublished - 15 Jun 2021
Externally publishedYes

Keywords

  • Annual temperature
  • Lake sediments
  • Obliquity forcing
  • Southern Asia
  • The last glacial stage
  • brGDGTs

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