arXiv · 2503.13765
Tectonics controls hydration-induced rheological heterogeneities in ultraslow-spread oceanic lithospheres
Abstract
At ultraslow, magma-poor spreading ridges, plate divergence is controlled by tectonics, with formation of detachment faults that expose variably serpentinized mantle rocks. Seismicity and the depth of seismic events in these environments are influenced by the degree of serpentinization, yet the nature and extent of deeper alteration remain poorly understood. This study uses a 2D visco-elasto-plastic model with thermodynamic calculations to explore the interaction between tectonics and hydration during ultraslow seafloor spreading. By coupling water availability and lithosphere hydration progress with active deformation, we reveal: (i) a tectonically controlled vertical extent of alteration along detachment faults; (ii) the preservation of amphibole-facies in exhumed serpentinized footwalls; (iii) significant lithospheric scale rheological heterogeneities due to variations in alteration mineral assemblages. We propose that tectonically controlled spatial variations in alteration play a key role in controlling earthquake depth distribution at mid-ocean ridges and associated transform faults and discuss the implications for seismogenesis in subduction zones.
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Leila Mezri, Alexander Diehl, Thomas P. Ferrand, Javier Garcia-Pintado, Manon Bickert, Marta Perez-Gussinye. 2025-03-17. Tectonics controls hydration-induced rheological heterogeneities in ultraslow-spread oceanic lithospheres. https://arxiv.org/abs/2503.13765
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