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    Mesozoic–Cenozoic multistage tectonic evolution of the Pamir: Detrital fission‐track constraints from the Tajik Basin

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    Author
    Li, Lin
    Najman, Yani
    Dupont‐Nivet, Guillaume
    Parra, Mauricio
    Roperch, Pierrick
    Kaya, Mustafa
    Meijer, Niels
    O'Sullivan, Paul
    Jepson, Gilby
    Aminov, Jovid
    Affiliation
    Department of Geosciences, University of Arizona
    Issue Date
    2022-10-17
    Keywords
    detrital fission-track
    double dating
    exhumation
    Mesozoic–Cenozoic
    Pamir tectonics
    Tajik Basin
    
    Metadata
    Show full item record
    Publisher
    Wiley
    Citation
    Li, L., Najman, Y., Dupont-Nivet, G., Parra, M., Roperch, P., Kaya, M., Meijer, N., O’Sullivan, P., Jepson, G., & Aminov, J. (2022). Mesozoic–Cenozoic multistage tectonic evolution of the Pamir: Detrital fission-track constraints from the Tajik Basin. Basin Research.
    Journal
    Basin Research
    Rights
    © 2022 International Association of Sedimentologists and European Association of Geoscientists and Engineers and John Wiley & Sons Ltd.
    Collection Information
    This item from the UA Faculty Publications collection is made available by the University of Arizona with support from the University of Arizona Libraries. If you have questions, please contact us at repository@u.library.arizona.edu.
    Abstract
    Knowledge of the tectonic history of the Pamir contributes to our understanding of both the evolution of collisional orogenic belts as well as factors controlling Central Asian aridification. It is, however, not easy to decipher the Mesozoic–Cenozoic tectonics of the Pamir due to extensive Neogene deformation in an orogen that remains largely understudied. This study reports detrital apatite and zircon fission-track (FT) ages from both the eastern Tajik Basin sedimentary rocks and Pamir modern river sands. These FT data, supported by vitrinite reflectance and zircon and apatite U–Pb double dating, suggest that the majority of the FT ages are unreset and record exhumation stages of the Pamir, which has served as the source terrane of the Tajik Basin since the Cretaceous. Furthermore, we combine the new data with a compilation of published detrital apatite and zircon FT data from both the Tajik Basin sedimentary rocks and Pamir modern river sands, to explore the Mesozoic–Cenozoic tectonic history of Pamir. Deconvolved FT Peak Ages document two major Mesozoic exhumation events associated with the Late Triassic–Early Jurassic Cimmerian orogeny that reflects accretion of the Pamir terranes, as well as the Early–early Late Cretaceous deformation associated with the northward subduction of the Neo-Tethys Ocean beneath Pamir. The compiled data also show significant Late Eocene–Neogene exhumation associated with the ongoing formation of the Pamir, which peaks at ca. 36, 25, 14 and 7 Ma.
    Note
    12 month embargo; first published: 05 October 2022
    ISSN
    0950-091X
    EISSN
    1365-2117
    DOI
    10.1111/bre.12721
    Version
    Final accepted manuscript
    Sponsors
    H2020 European Research Council
    ae974a485f413a2113503eed53cd6c53
    10.1111/bre.12721
    Scopus Count
    Collections
    UA Faculty Publications

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