<?xml version='1.0' encoding='UTF-8'?><metadata xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:dcterms="http://purl.org/dc/terms/" xmlns="http://dublincore.org/documents/dcmi-terms/"><dcterms:title>Copiapó_Experiment_Catalogue</dcterms:title><dcterms:identifier>https://doi.org/10.34691/FK2/91GHJE</dcterms:identifier><dcterms:creator>Pastén, Francisco</dcterms:creator><dcterms:publisher>Repositorio de datos de investigación de la Universidad de Chile</dcterms:publisher><dcterms:issued>2022-01-20</dcterms:issued><dcterms:modified>2024-01-25T12:17:01Z</dcterms:modified><dcterms:description>The subduction of different features such as oceanic ridges, fractures zones or seamounts are important for the accurate characterization of subduction zones. These structures may affect the along-dip variability of seismic behavior and eventually trigger slow earthquakes. Here we studied the along- dip influence of the Copiapó ridge subduction in the Atacama region, North-Central Chile, an area where seismic swarms, low coupling values and slow earthquakes have been reported. We built a seismic catalog including repeating earthquakes and non-volcanic tremors (NVT), and performed a 3-D tomography for P-wave velocity and Vp/Vs ratio. We identify along-dip segmentation involving 4 distinct segments: (1) a locked seismogenic zone (20 to 35 km depth), hosting ordinary clustered micro-seismicity and repeating earthquakes; (2) a transition zone (35 to 42 km) with non-volcanic tremor and low seismicity; (3) a zone (42 to 60 km) without seismicity and with slow-slip events and (4) a deep zone with more abundant seismicity. The velocity models show differences among these zones: while low velocity anomalies of Vp and Vs, and Vp/Vs ratio between 1.76 and 1.82 are observed in the deep zone, higher velocities are present in the other areas. These features indicate that SSE are located in a zone with higher pore fluid pressure. We propose that these geodynamic differences are generated by the subduction of heterogenic seamounts associated to the Copiapó ridge.</dcterms:description><dcterms:subject>Earth and Environmental Sciences</dcterms:subject><dcterms:subject>Sismicidad</dcterms:subject><dcterms:date>2022-01-20</dcterms:date><dcterms:contributor>Pastén, Francisco</dcterms:contributor><dcterms:dateSubmitted>2021-10-09</dcterms:dateSubmitted><dcterms:license>CC-BY 4.0</dcterms:license></metadata>