Local seismicity around the Chain Transform Fault at the Mid-Atlantic Ridge from OBS observations

Author:

Schlaphorst David12ORCID,Rychert Catherine A3,Harmon Nicholas3ORCID,Hicks Stephen P4ORCID,Bogiatzis Petros3ORCID,Kendall J-Michael5,Abercrombie Rachel E6

Affiliation:

1. Instituto Dom Luiz (IDL), Faculdade de Ciências, Universidade de Lisboa , Campo Grande, 1749-016 Lisboa , Portugal

2. School of Earth Sciences, University of Bristol , Wills Memorial Building, Queens Road, Bristol BS81RJ , UK

3. Ocean and Earth Science, University of Southampton , National Oceanography Centre, Southampton SO14 3ZH , UK

4. Department of Earth Science and Engineering , Imperial College London SW7 2AZ, UK

5. Department of Earth Sciences, University of Oxford , OX1 3AN, UK

6. Department of Earth and Environment, Boston University , MA 02215, USA

Abstract

SUMMARYSeismicity along transform faults provides important constraints for our understanding of the factors that control earthquake ruptures. Oceanic transform faults are particularly informative due to their relatively simple structure in comparison to their continental counterparts. The seismicity of several fast-moving transform faults has been investigated by local networks, but as of today there been few studies of transform faults in slow spreading ridges. Here, we present the first local seismicity catalogue based on event data recorded by a temporary broad-band network of 39 ocean–bottom seismometers located around the slow-moving Chain Transform Fault (CTF) along the Mid-Atlantic Ridge (MAR) from 2016 to 2017 March. We locate 972 events in the area by simultaneously inverting for a 1-D velocity model informed by the event P- and S-arrival times. We refine the depths and focal mechanisms of the larger events using deviatoric moment tensor inversion. Most of the earthquakes are located along the CTF (700) and Romanche transform fault (94) and the MAR (155); a smaller number (23) can be observed on the continuing fracture zones or in intraplate locations. The ridge events are characterized by normal faulting and most of the transform events are characterized by strike-slip faulting, but with several reverse mechanisms that are likely related to transpressional stresses in the region. CTF events range in magnitude from 1.1 to 5.6 with a magnitude of completeness around 2.3. Along the CTF we calculate a b-value of 0.81 ± 0.09. The event depths are mostly shallower than 15 km below sea level (523), but a small number of high-quality earthquakes (16) are located deeper, with some (8) located deeper than the brittle-ductile transition as predicted by the 600 °C-isotherm from a simple thermal model. The deeper events could be explained by the control of sea water infiltration on the brittle failure limit.

Funder

Natural Environment Research Council

European Research Council

National Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Geochemistry and Petrology,Geophysics

Reference88 articles.

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3. Sediment characterization at the equatorial Mid-Atlantic Ridge from P-to-S teleseismic phase conversions recorded on the PI-LAB experiment;Agius;Geophys. Res. Lett.,2018

4. A thin mantle transition zone beneath the equatorial Mid-Atlantic Ridge;Agius;Nature,2021

5. Maximum likelihood estimate of b in the formula logN= a-bM and its confidence limits;Aki;Bull. Earthq. Res. Inst. Univ. Tokyo,1965

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