Oceanic intraplate faulting as a pathway for deep hydration of the lithosphere: Perspectives from the Caribbean

Author:

Bishop Brandon T.1ORCID,Cho Sungwon1,Warren Linda1,Soto-Cordero Lillian1,Pedraza Patricia2,Prieto German A.3,Dionicio Viviana2

Affiliation:

1. 1Department of Earth and Atmospheric Sciences, Saint Louis University, 3642 Lindell Boulevard, St. Louis, Missouri 63108, USA

2. 2Red Sismológica Nacional de Colombia, Servicio Geológico Colombiano, Diagonal 53 # 34-53, Bogotá D.C., Colombia

3. 3Departamento de Geociencias, Universidad Nacional de Colombia, Avenida Carrera 30 # 45-03, Bogotá D.C., Colombia

Abstract

Abstract The recycling of water into the Earth’s mantle via hydrated oceanic lithosphere is believed to have an important role in subduction zone seismicity at intermediate depths. Hydration of oceanic lithosphere has been shown to drive double planes of intermediate-depth, Wadati-Benioff zone seismicity at subduction zones. However, observations from trenches show that pervasive normal faulting causes hydration ~25 km into the lithosphere and can explain neither locations where separations of 25–40 km between Wadati-Benioff zone planes are observed nor the spatial variability of the lower plane in these locations, which suggests that an additional mechanism of hydration exists. We suggest that intraplate deformation of >50-m.y.-old lithosphere, an uncommon and localized process, drives deeper hydration. To test this, we relocated the 25 November 2018 6.0 MW Providencia, Colombia, earthquake mainshock and 575 associated fore- and aftershocks within the interior of the Caribbean oceanic plate and compared these with receiver functions (RF) that sampled the fault at its intersection with the Mohorovičić discontinuity. We examined possible effects of velocity model, initial locations of the earthquakes, and seismicphase arrival uncertainty to identify robust features for comparison with the RF results. We found that the lithosphere ruptured from its surface to a depth of ~40 km along a vertical fault and an intersecting, reactivated normal fault. We also found RF evidence for hydration of the mantle affected by this fault. Deeply penetrating deformation of lithosphere like that we observe in the Providencia region provides fluid pathways necessary to hydrate oceanic lithosphere to depths consistent with the lower plane of Wadati-Benioff zones.

Publisher

Geological Society of America

Subject

Stratigraphy,Geology

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