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Multiple Uplift and Exhumation of the Southeastern Tibetan Plateau: Evidence from Low-Temperature Thermochronology
引用本文:WU Limin,PENG Touping,FAN Weiming,ZHAO Guochun,GAO Jianfeng,DONG Xiaohan,PENG Shili,MIN Kang,Tin Aung MYINT. Multiple Uplift and Exhumation of the Southeastern Tibetan Plateau: Evidence from Low-Temperature Thermochronology[J]. 《地质学报》英文版, 2024, 98(3): 569-584
作者姓名:WU Limin  PENG Touping  FAN Weiming  ZHAO Guochun  GAO Jianfeng  DONG Xiaohan  PENG Shili  MIN Kang  Tin Aung MYINT
摘    要:Since the Cenozoic, the Tibetan Plateau has experienced large-scale uplift and outgrowth due to the India–Asia collision. However, the mechanism and timing of these tectonic processes still remain debated. Here, using apatite fission track dating and inverse thermal modeling, we explore the mechanism of different phases of rapid cooling for different batholiths and intrusions in the southeastern Tibetan Plateau. In contrast to previous views, we find that the coeval granitic batholith exposed in the same tectonic zone experienced differential fast uplift in different sites, indicating that the present Tibetan Plateau was the result of differential uplift rather than the entire lithosphere uplift related to lithospheric collapse during Cenozoic times. In addition, we also suggest that the 5–2 Ma mantle-related magmatism should be regarded as the critical trigger for the widely coeval cooling event in the southeastern Tibetan Plateau, because it led to the increase in atmospheric CO2 level and a hotter upper crust than before, which are efficient for suddenly fast rock weathering and erosion. Finally, we propose that the current landform of the southeastern Tibetan Plateau was the combined influences of tectonic and climate.

收稿时间:2023-09-02
修稿时间:2024-01-04

Multiple Uplift and Exhumation of the Southeastern Tibetan Plateau: Evidence from Low-Temperature Thermochronology
WU Limin,PENG Touping,FAN Weiming,ZHAO Guochun,GAO Jianfeng,DONG Xiaohan,PENG Shili,MIN Kang,Tin Aung MYINT. Multiple Uplift and Exhumation of the Southeastern Tibetan Plateau: Evidence from Low-Temperature Thermochronology[J]. Acta Geologica Sinica (English Edition), 2024, 98(3): 569-584
Authors:WU Limin  PENG Touping  FAN Weiming  ZHAO Guochun  GAO Jianfeng  DONG Xiaohan  PENG Shili  MIN Kang  Tin Aung MYINT
Affiliation:1 State Key Laboratory of Isotope Geochemistry, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, China2 Chinese Academy of Sciences Center for Excellence in Deep Earth Science, Guangzhou 510640, China3 University of Chinese Academy of Sciences, Beijing 100049, China;3 University of Chinese Academy of Sciences, Beijing 100049, China4 Chinese Academy of Sciences Center for Excellence in Tibetan Plateau Earth Sciences, Beijing 100101, China;5 Department of Earth Sciences, The University of Hong Kong, Hong Kong 999077, China;6 State Key Laboratory of Ore Deposit Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China;7 Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai), Zhuhai, Guangdong 519085, China; 8 Department of Geology, University of Mandalay, Mandalay 05011, Myanmar
Abstract:
Keywords:apatite fission track   rapid cooling   differential uplift   magmatism   southeastern Tibetan Plateau
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