The onset age and depth of the central Tibet strike-slip faults are two sti l l unresolved fundamental issues with regard to the Cenozoic tectonic evolution of central Tibet. Here we present a comprehensive dataset of geochronological, geochemical and structural data on recently discovered en-echelon dykes representing the incipient development of strike-slip faulting from the Lunpola basin in central Tibet. Our results provide evidence for mantle-derived, bimodal magmatism linked to lithospheric-scale strike-slip faulting at 35–32 Ma, and demonstrate that the central Tibet strike-slip faults are at least 20 Ma older than previously estimated (15–8 Ma). We suggest that these faults were originally connected with the lithospheric-scale Jiali and Ailao Shan-Red River shear zones exposed farther east, forming part of a straight, 250 0–30 0 0 km-long lithospheric shear zone that favored mantle upwelling and magmatic intrusion coeval with substantial uplift (1.5–2 km) of the central Tibet valley in the early Oligocene.

Lu, H., Li, H., Xiang, Z., Malusa', M., Li, C., Zhang, Z., et al. (2025). Lithospheric strike-slip faulting in central Tibet since 35-32 Ma and implications for the incipient Asian extrusional tectonics. NATIONAL SCIENCE REVIEW [10.1093/nsr/nwae428].

Lithospheric strike-slip faulting in central Tibet since 35-32 Ma and implications for the incipient Asian extrusional tectonics

Malusa', Marco Giovanni;
2025

Abstract

The onset age and depth of the central Tibet strike-slip faults are two sti l l unresolved fundamental issues with regard to the Cenozoic tectonic evolution of central Tibet. Here we present a comprehensive dataset of geochronological, geochemical and structural data on recently discovered en-echelon dykes representing the incipient development of strike-slip faulting from the Lunpola basin in central Tibet. Our results provide evidence for mantle-derived, bimodal magmatism linked to lithospheric-scale strike-slip faulting at 35–32 Ma, and demonstrate that the central Tibet strike-slip faults are at least 20 Ma older than previously estimated (15–8 Ma). We suggest that these faults were originally connected with the lithospheric-scale Jiali and Ailao Shan-Red River shear zones exposed farther east, forming part of a straight, 250 0–30 0 0 km-long lithospheric shear zone that favored mantle upwelling and magmatic intrusion coeval with substantial uplift (1.5–2 km) of the central Tibet valley in the early Oligocene.
Articolo in rivista - Articolo scientifico
onset age, shear depth, strike-slip faulting, bimodal dyke, Lunpola basin, central Tibet
English
28-nov-2024
2025
nwae428
open
Lu, H., Li, H., Xiang, Z., Malusa', M., Li, C., Zhang, Z., et al. (2025). Lithospheric strike-slip faulting in central Tibet since 35-32 Ma and implications for the incipient Asian extrusional tectonics. NATIONAL SCIENCE REVIEW [10.1093/nsr/nwae428].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/536203
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