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Mid-Cretaceous Accelerated Cooling of the Beishan Orogen, NW China: Evidence from Apatite Fission Track Thermochronology

Authors :
Fujun Wang
Meng Luo
Zhiyuan He
Yiqiong Wang
Bihai Zheng
Zhiyong Zhang
Xiao Hu
Wenbin Zhu
Source :
Lithosphere, Vol 2023, Iss Special 14 (2024)
Publication Year :
2024
Publisher :
GeoScienceWorld, 2024.

Abstract

The Beishan orogen, a significant component of the southern Altaids, presents an opportunity for investigating the intracontinental deformation and exhumation history of the Altaids during the Mesozoic era. Although previous studies indicated that the Beishan orogen has experienced multiple reactivation since the late Mesozoic, the precise extent of these events remains poorly constrained. Here, we provide a comprehensive synthesis of field observations and apatite fission track (AFT) thermochronological dating throughout the Beishan orogen. Detailed field observations confirmed four major E-W trending thrusts in our study area. Based on the youngest truncated strata associated with the thrusts and previous dating results from neighboring regions, we propose that these thrust sheets likely developed in the late Middle Jurassic. AFT dating results from seven pre-Mesozoic granitoid samples and associated with thermal history modeling demonstrate that the Beishan orogen experienced a rapid basement cooling during the mid-Cretaceous (~115–80 Ma). Moreover, a compilation of previously published and newly gained AFT data reveals a comparable mid-Cretaceous cooling event in other parts of Central Asia, such as Qilian Shan, Eastern Tianshan, and Altai-Sayan. This observation suggests that the mid-Cretaceous cooling event is more likely to be regional rather than localized. This mid-Cretaceous cooling pulse is interpreted as a tectonic exhumation controlled by boundary faults and related to the rotation of the Junggar and Tarim basins. These processes are linked to distant plate-margin events along the Eurasian continent.

Subjects

Subjects :
Geology
QE1-996.5

Details

Language :
English
ISSN :
19418264 and 19474253
Volume :
2023
Issue :
Special 14
Database :
Directory of Open Access Journals
Journal :
Lithosphere
Publication Type :
Academic Journal
Accession number :
edsdoj.ba320dd73dd4bd99eecd1845bd151cb
Document Type :
article
Full Text :
https://doi.org/10.2113/2023/lithosphere_2023_239/6198597/lithosphere_2023_239.pdf