Palaeomagnetic and geochronologic results from lower cretaceous volcanics of the western Qiangtang terrane and implications for the Lhasa-Qiangtang collision
Abstract
Abstract The Lhasa-Qiangtang collision is key to understanding the formation and evolution of the Tibetan Plateau; however, the precise timing of this event remains hotly debated. To address this uncertainty, we present a combined palaeomagnetic and geochronologic study of Lower Cretaceous Meiriqieco Formation rhyolites from the western Qiangtang terrane. Our geochronologic data reveal an Early Cretaceous (ca. 113–109) age for the Meiriqieco Formation, contradicting previous Late Jurassic assignments. The tilt-corrected site-mean direction yields a palaeopole at 74.3°N, 250.5°E with A 95 = 4.7° ( N = 23). Integrating our new and existing palaeomagnetic data, we place the western Qiangtang terrane at ~ 23.1°N during the Early Cretaceous. Comparison with Early Cretaceous palaeomagnetic data from the western Lhasa terrane indicates that convergence of the two terranes occurred no later than the Early Cretaceous (ca. 132–100 Ma).
Article Details
Authors (14)
Yabo Zhang
Weiwei Bian
Jiahui Ma
Suo Wang
Xianwei Jiao
Jiacheng Liang
Siqi Wang
State Key Laboratory of Special Materials Surface Engineering, School of Materials Science and Engineering
Xiaolin Li
Energy and Environmental Directorate, Pacific Northwest National Laboratory
Jikai Ding
Hanqing Zhao
MOE Key Laboratory of Smart Drug Delivery, MOE Innovative Center for New Drug Development of Immune Inflammatory Diseases, School of Pharmacy
Haiyan Li
School of Chemical Engineering and Technology
Huaichun Wu
Yiming Ma
Department of Biology, Hong Kong Baptist University
Tianshui Yang