TY - JOUR
T1 - Interstadial diversity of East Asian summer monsoon linked to changes of the Northern Westerlies
AU - Dong, Xiyu
AU - Zhang, Xu
AU - Zhang, Haiwei
AU - Zhang, Yuao
AU - Rasmussen, Sune O.
AU - Zhang, Rui
AU - Cai, Yanjun
AU - Huang, Shouyi
AU - Kathayat, Gayatri
AU - Pérez-Mejías, Carlos
AU - Zong, Baoyun
AU - Liu, Dianbing
AU - Duan, Pengzhen
AU - Svensson, Anders
AU - Spötl, Christoph
AU - Li, Youwei
AU - Niu, Xiaowen
AU - Wang, Jian
AU - Li, Hanying
AU - Ning, Youfeng
AU - Xu, Yao
AU - Wang, Xianfeng
AU - Stríkis, Nicolás M.
AU - Cruz, Francisco W.
AU - Sinha, Ashish
AU - Werner, Martin
AU - Lawrence Edwards, R.
AU - Cheng, Hai
N1 - Publisher Copyright:
© The Author(s) 2025.
PY - 2025/12
Y1 - 2025/12
N2 - During the last glacial period, the iconic Greenland ice-core records provide evidence of interstadial warmings with various durations ranging from a century to millennia. However, whether differences in interstadial duration are mirrored by distinct hydroclimate responses in the tropics remains unclear. Here we present four speleothem δ18O records from the Indian summer monsoon (ISM) and East Asian summer monsoon (EASM) regions, spanning both short and long interstadials during the last glacial period. Greenland and ISM records show broadly similar isotopic responses across events, however, the EASM records exhibit markedly different δ18O depletions between short and long interstadials. Using an isotope-enabled climate model, we attribute these differences to a further northward shift of the Northern Westerlies during short interstadials, driven by intensified high-latitude warming. This shift promoted the northwestward expansion of Western Pacific Subtropical High and hence the delivery of isotopically enriched near-sourced vapor to eastern China, dampening δ18O depletion during stadial-to-interstadial transitions. Our findings highlight a previously unrecognized sensitivity of EASM precipitation δ18O to nuanced meridional shifts in the Northern Westerlies in contrast to the uniform responses of the ISM during interstadials.
AB - During the last glacial period, the iconic Greenland ice-core records provide evidence of interstadial warmings with various durations ranging from a century to millennia. However, whether differences in interstadial duration are mirrored by distinct hydroclimate responses in the tropics remains unclear. Here we present four speleothem δ18O records from the Indian summer monsoon (ISM) and East Asian summer monsoon (EASM) regions, spanning both short and long interstadials during the last glacial period. Greenland and ISM records show broadly similar isotopic responses across events, however, the EASM records exhibit markedly different δ18O depletions between short and long interstadials. Using an isotope-enabled climate model, we attribute these differences to a further northward shift of the Northern Westerlies during short interstadials, driven by intensified high-latitude warming. This shift promoted the northwestward expansion of Western Pacific Subtropical High and hence the delivery of isotopically enriched near-sourced vapor to eastern China, dampening δ18O depletion during stadial-to-interstadial transitions. Our findings highlight a previously unrecognized sensitivity of EASM precipitation δ18O to nuanced meridional shifts in the Northern Westerlies in contrast to the uniform responses of the ISM during interstadials.
UR - https://www.scopus.com/pages/publications/105014172797
U2 - 10.1038/s41467-025-63057-2
DO - 10.1038/s41467-025-63057-2
M3 - 文章
C2 - 40854888
AN - SCOPUS:105014172797
SN - 2041-1723
VL - 16
JO - Nature Communications
JF - Nature Communications
IS - 1
M1 - 7765
ER -