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Ocean-plate stratigraphy (central Tibet) reveals Early Mesozoic double-subduction tectonics in the northern Meso-Tethys margin: A central piece of the Cimmerian geopuzzle

  • Min Zeng
  • , Chenwei Li
  • , Yildirim Dilek
  • , Zhifang Zhao
  • , Frank R. Ettensohn
  • , Christopher K. Morley

Research output: Contribution to journalArticlepeer-review

Abstract

The timing and nature of initial Meso-Tethys subduction beneath the Cimmerian South Qiangtang (SQT) are highly disputed and impact global plate reconstructions. To address this issue, the internal structure and ocean-plate stratigraphy (OPS) of an accretionary complex at the SQT margin were investigated herein. Our integrated studies of field mapping, stratigraphy, zircon U-Pb dating, and geochemistry document an OPS sequence of Late Triassic-early Jurassic trench-fill turbidites intercalated with arc-affiliated high-Nb basalts (HNB; ∼219 Ma; SiO2 = 45–48 wt%, Nb = 19.8–27.8 ppm, Nb/U = 32–48), Nb-enriched basalts (NEB; ∼217–214 Ma; 48–54 wt%, Nb = 5.2–10.46 ppm) and andesitic rocks (∼192 Ma). The results indicate simultaneous operations of two north-dipping subduction zones, which initiated at ∼ 220 Ma, in the Meso-Tethyan SQT margin. The Southern Subduction Zone produced a short-lived intra-oceanic arc, represented by the HNB and NEB, fringing the SQT. The Northern Subduction Zone facilitated the fringing arc to collide with the SQT at ∼ 210 Ma, and terminated at ∼ 190 Ma when the microcontinents (Amdo and Jiayuqiao) collided with the SQT. The Southern Subduction Zone migrated northward and brought about an Early Jurassic Andean-type arc, which delivered pyroclastic deposits with abundant high-Mg# andesitic clasts (SiO2 = 53–58 wt%, Mg# = 52–54) to the trench. Together with regional information, it is envisaged that the Late Triassic-Early Jurassic double-subduction system was active along the entire southern Cimmerian margin: the Northern Subduction Zone bounded the main Cimmerian ribbon continent in the south and a series of microcontinents (e.g., Amdo, Jiayuqiao and Tengchong) was scattered in-between the two subduction zones. Proceeding of the double subduction until termination of the northern one at ∼ 190 Ma likely induced the Early Jurassic, synchronous occurrences of continental-arc magmatism, exhumation of high-pressure metamorphic rocks, emplacement of ophiolite and amalgamation of microcontinents, along this margin.

Original languageEnglish
Pages (from-to)120-136
Number of pages17
JournalGondwana Research
Volume155
DOIs
StatePublished - Jul 2026

Bibliographical note

Publisher Copyright:
© 2026 International Association for Gondwana Research

Funding

This study was co-supported by funds from Deep Earth Probe and Mineral Resources Exploration - National Science and Technology Major Project ( 2025ZD1006602 ), National Natural Science Foundation of China ( No. 41872110, No. 42302068, and No. 41102065 ) and Yunnan University ( CZ21623201, C1762101030017 ). We thank the editors and reviewers for their time and patience in processing this paper.

FundersFunder number
Egyptian Mineral Resources Authority
National Science and Technology Major Project2025ZD1006602
Yunnan UniversityCZ21623201, C1762101030017
National Natural Science Foundation of China (NSFC)41872110, 42302068, 41102065

    Keywords

    • Bangong-Nujiang Meso-Tethys suture zone
    • Mugagangri-Group accretionary complex
    • Nb-enriched arc basalts
    • Ocean-plate stratigraphy (OPS)
    • Subduction initiation

    ASJC Scopus subject areas

    • Geology

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