Late cretaceous tectonic change of the eastern margin of the Tibetan Plateau — results from multisystem thermochronology

被引:0
作者
Bin Deng
Shugen Liu
Zhiwu Li
Junxing Cao
Wei Sun
机构
[1] State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation/Chengdu University of Technology,Institute für Geowissenschaften
[2] Universität Tübingen,undefined
来源
Journal of the Geological Society of India | 2012年 / 80卷
关键词
Multisystem thermochronology; Late Cretaceous; Tectonic change; Eastern margin of Tibetan Plateau;
D O I
暂无
中图分类号
学科分类号
摘要
Partially due to lack of structural and sedimentary records to constrain the Jurassic-to-Cretaceous evolution, there was a missing process here in the eastern margin of Tibetan Plateau as it changed from the Paleo-Tethyan to Neo-Tethyan regime. Based on the analysis of 125 thermochronology ages (U/Pb, 40Ar/39A, 87Rb/86Sr, FT, U-Th/He) of igneous rocks from the eastern margin of Tibet, we propose a multisystem thermochronology approach to restore the cooling and emplacement of granites and decipher the missing process. Our integrated study suggests that a key Late Cretaceous (about 100Ma) tectonic change from the Paleo-Tethyan to Neo-Tethyan regime took place there. In the Late Triassic period, the initial emplacement of granite in the Songpan-Ganzi Fold Belt (SGFB) was characterized by a decrease in emplacement age and depth from west to east, and from north to south. Subsequently, all were followed by a very long period of slow cooling, which was followed by a rapid emplacement of about 100Ma. The intensive granite emplacement took place all over except northeastern SGFB, with a decrease in emplacement depth from west to east, which was linked with the far-field effect of Lhasa-Qiangtang collision. After this episode, the cooling history of granite in SGFB had a rapid emplacement on the subsurface under the control of the Neo-Tethyan regime. This process has control of the post Late Cretaceous regional magmatic activity and tectonics, as well as the sedimentary response in Sichuan and Xichang basin.
引用
收藏
页码:241 / 254
页数:13
相关论文
共 233 条
[31]  
Lanford W.A.(2009)Ar and (U-Th)/He thermochronology Chinese Jour. Geol 44 1151-1180
[32]  
Ryerson F.J.(2003)High closure temperatures of the U-Pb system in large apatites from the Tin Mountain pegmatite, Black Hill, South Dakota, USA Jour. Nanjing University (Natural Sciences) 29 337-344
[33]  
Cherniak D.J.(2005)Constraining the stepwise migration of the eastern Tibetan Plateau margin by apatite fission track thermochronology Jour. Struct. Geol. 27 119-137
[34]  
Cherniak D.J.(2005)Thermochronology of the uplift of the BayanHar Mountains, Qinghai, China Tectonophysics 398 45-66
[35]  
Watson E.B.(2005)Cooling process of granite in northwestern Sichuan province and its constraint to regional mineralization Jour Asian Earth Sci 25 915-935
[36]  
Cherniak D.J.(2004)4-D textural and structural characteristics of Longmen intracontinental composite orogenic belt, southwest China Geochim. Cosmochim. Acta 68 1857-1887
[37]  
Watson E.B.(2005)The elevation history of crustal blocks in Panzhihua-Xichang region (western Yangtze craton) since early Cretaceous time-constraints from fission track dating of granulites Reviews in Mineralogy & Geochemistry 58 1-18
[38]  
Grove M.(2006)Structural evidence for the Permo-Triassic tectonic evolution of the Yidun Arc, eastern Tibetan Plateau Annu. Rev. Earth Planet. Sci. 34 419-466
[39]  
Harrison T.M.(1995)Mesozoic cooling across the Yidun Arc, central-eastern Tibetan Plateau: A reconnaissance EPSL 130 201-216
[40]  
Decelles P.G.(2004)Ar/ Jour. Asian Earth Sci. 22 465-481