The role of interplate locking on the seismic reactivation of upper plate faults on the subduction margin of northern Chile

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作者
Gabriel González
Francisco Pasten-Araya
Pia Victor
Yerko González
Jordán Valenzuela
Mahesh Shrivastava
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[1] Universidad Católica del Norte,Departamento de Ciencias Geológicas, National Research Center for Integrated Natural Disaster Management
[2] Universidad de Chile,Departamento de Geofísica, Facultad de Ciencias Físicas y Matemáticas
[3] Helmholtz-Zentrum Potsdam,Programa de Doctorado en Ciencias Mención Geología
[4] Deutsches GeoForschungsZentrum (GFZ) Potsdam,undefined
[5] Universidad Católica del Norte,undefined
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Quaternary deformation in the northern Chile forearc is controlled by trench parallel shortening along reactivated Mesozoic faults. Dextral strikes-slip is expressed in NW–SE striking faults of the Atacama Fault System, and reverse displacement dominates in E–W faults. This deformation results of the convergence in a concave-seaward continental margin. On September 11th, 2020, a Mw 6.3 earthquake and its subsequent aftershocks took place in the coastal region of northern Chile, revealing the reactivation of the deepest segment of a WNW–ESE striking upper plate fault. The reactivation of this fault occurred after the Mw 8.1 Iquique earthquake, and it seems to be connected to a N–S interplate locking segmentation of the plate margin, which is clearly shown by the locking pattern before the Iquique earthquake. This poses the question of how heterogeneous locking influences upper plate seismicity and how it relates to trench-parallel shortening.
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