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April 14, 2026Geophysical Research Letters0 citationsOpen Access

Fault Kinematic Controls on the Spatio‐Temporal Proximity of the 2023 Mw 7.8‐7.7 Türkiye Earthquakes

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WXWenbin XuKSKehui SunQWQijie Wang

Key Points

  • This investigation aims to elucidate the mechanisms controlling the spatio-temporal proximity of the 2023 Türkiye earthquakes.
  • Utilized dense geodetic observations.
  • Employed dual-fault screw dislocation and strain-rate models.
  • Examined the pre-stress state of the East Anatolian Fault Zone.
  • Identified slip rates of 6.0–7.5 mm/yr for the Pazarcık segment and 2.0–2.5 mm/yr for the Çardak segment.
  • Showed ambient pre-stress encourages rupture cascades and prevents inter-strand propagation.
  • Demonstrated that lithospheric heterogeneity influences seismic activity in the fault zone.

Abstract

Abstract The mechanism governing the spatio‐temporal proximity of the 2023 Mw 7.8‐7.7 Türkiye earthquakes remains enigmatic. Here, we used dense geodetic observations integrated with dual‐fault screw dislocation, Euler‐vector‐constrained block, and strain‐rate models to investigate the interseismic kinematics and pre‐stress state of the East Anatolian Fault Zone (EAFZ). We showed that the Pazarcık and Çardak segments exhibit slip rates of 6.0–7.5 mm/yr and 2.0–2.5 mm/yr, respectively, reconciling long‐standing geodetic‐geologic discrepancies in regional slip partitioning. We found ambient pre‐stress both promotes rupture cascades on single strands and prevents inter‐strand propagation, segmenting ruptures into doublet events. Strain localization and strain‐axes rotation provide geodetic evidence for lithospheric heterogeneity control between the Arabian and Anatolian plates over the kinematic behavior and seismic activity of the EAFZ. Our study highlights the seismic risk arising from near‐synchronous ruptures of fault systems shaped by lithospheric heterogeneity across crustal and mantle depths.

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/69ddd9f9e195c95cdefd7638https://doi.org/10.1029/2025gl119507
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