Seismic Anisotropy and Lithospheric Deformation of the Eastern (Chinese) Tianshan Orogen

Abstract Plate tectonics theory predicts strong deformation along the plate boundaries. But intracontinental orogeny may occur far away from the boundaries, for example, the Tianshan orogen within the Eurasian plate, whose mechanism remains debated. In this study, we deployed a dense array of broadband seismic stations (∼15 km spacing) along an ∼600 km profile across the eastern (Chinese) Tianshan orogen. We measured SKS/SKKS splitting parameters to map spatial variations in seismic anisotropy and lithospheric deformation from the orogen to the adjacent blocks. In the Tianshan orogen, fast polarization directions are primarily aligned with the orogen's strike, indicating a dominant contribution from the lithosphere. Delay times of up to 1.2 s may be explained by the presence of a thick lithosphere (∼150 km). In the stable Tarim and Junggar basins/blocks, the orogen oblique or perpendicular fast polarization directions and shorter delay times (0.3–0.8 s) mainly reflect weak fossil anisotropy frozen into the lithosphere. Our results suggest pure‐shear deformation of the orogen lithosphere under horizontal contraction between the rigid Tarim and Junggar blocks. Further comparison between the western and eastern Tianshan (separated by ∼80°E) suggests two‐stage processes of the intracontinental orogeny. The eastern Tianshan is in an early stage with dominant lithosphere thickening while the western Tianshan represents a later stage with significant lithospheric delamination.

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Publication Details

Journal
Journal of Geophysical Research Solid Earth
Published
2026-09-30
DOI
https://doi.org/10.1029/2026jb034435
Primary Topic
High-pressure geophysics and materials
Type
article
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article

Seismic Anisotropy and Lithospheric Deformation of the Eastern (Chinese) Tianshan Orogen

Cong Ji, Chuanwei Ye, Zhouchuan Huang, Hanlin Chen et al.
Journal of Geophysical Research Solid Earth
High-pressure geophysics and materials
article

Seismic Anisotropy and Lithospheric Deformation of the Eastern (Chinese) Tianshan Orogen

Cong Ji, Chuanwei Ye, Zhouchuan Huang, Hanlin Chen, Yuqi Zhu, Zhao Long, Dayong Yu
article en

Abstract

Abstract Plate tectonics theory predicts strong deformation along the plate boundaries. But intracontinental orogeny may occur far away from the boundaries, for example, the Tianshan orogen within the Eurasian plate, whose mechanism remains debated. In this study, we deployed a dense array of broadband seismic stations (∼15 km spacing) along an ∼600 km profile across the eastern (Chinese) Tianshan orogen. We measured SKS/SKKS splitting parameters to map spatial variations in seismic anisotropy and lithospheric deformation from the orogen to the adjacent blocks. In the Tianshan orogen, fast polarization directions are primarily aligned with the orogen's strike, indicating a dominant contribution from the lithosphere. Delay times of up to 1.2 s may be explained by the presence of a thick lithosphere (∼150 km). In the stable Tarim and Junggar basins/blocks, the orogen oblique or perpendicular fast polarization directions and shorter delay times (0.3–0.8 s) mainly reflect weak fossil anisotropy frozen into the lithosphere. Our results suggest pure‐shear deformation of the orogen lithosphere under horizontal contraction between the rigid Tarim and Junggar blocks. Further comparison between the western and eastern Tianshan (separated by ∼80°E) suggests two‐stage processes of the intracontinental orogeny. The eastern Tianshan is in an early stage with dominant lithosphere thickening while the western Tianshan represents a later stage with significant lithospheric delamination.

Journal of Geophysical Research Solid EarthVol. 131(10)
Zhejiang University (CN), Nanjing University (CN)
Life below water
Openalex Percentile: Top 14%
High-pressure geophysics and materials
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Seismic Anisotropy and Lithospheric Deformation of the Eastern (Chinese) Tianshan Orogen — Cong Ji, Chuanwei Ye, et al. · Journal of Geophysical Research Solid Earth (2026) | TGRS Research Map | TGRS