Geomorphic dating of across-fault gully incision reveals time-invariant late Quaternary slip-rates at the eastern termination of the Altyn Tagh Fault
- 1. 1. Geological Survey of Israel, Yesha'yahu Leibowitz 32, Jerusalem 9692100 , Israel
- 2. 2. State Key Laboratory of Earthquake Dynamics, Institute of Geology, China Earthquake Administration, Beijing 100029, China
- 3. 4. Institute of Earth Sciences, Hebrew University of Jerusalem, Jerusalem 91904, Israel; 1. Geological Survey of Israel, Yesha'yahu Leibowitz 32, Jerusalem 9692100 , Israel
- 4. 3. Institute of Remote Sensing and Digital Earth, Chinese Academy of Sciences, Beijing 100094 China
- 5. 5. Department of Geology and Environmental Science, University of Pittsburgh, Pittsburgh, PA 15260-3332, USA
Description
Interpretation of fault slip-rates inferred from tectonically offset fluvial landforms is often limited by uncertainties associated with difficulties to explicitly date fluvial incision across the fault. Here, we employed morphology-based modeling to ameliorate this universal dating limitation for gullies that were differentially offset in a sinistral sense across the Altyn Tagh Fault near its eastern termination at ~97°E. Using a stream-power erosion model with locally calibrated coefficients we calculated across-fault gully incision ages that decrease with offset magnitude, are up to threefold younger than the age of the terrace they incised and all-together point towards time-invariant sinistral slip. Luminescence dating of offset alluvial terraces at the same site suggests constant sinistral slip at 0.5±0.1 mm/yr since 52±4 ka. Our results are consistent with northeastward expansion of the Tibetan Plateau into stable parts of central Asia through an episodic, “stepwise” process punctuated by prolonged geologic time intervals of constant deformation rates.