Andean structural control on interseismic coupling in the North Chile subduction zone
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2013-04-28Metadata
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Andean structural control on interseismic coupling in the North Chile subduction zone
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Abstract
Segmentation can influence the extent of earthquake rupture and event magnitude(1): large megathrust earthquakes result from total rupture of relatively continuous segments of the subduction interface(2-5). Segmentation is attributed to variations in the frictional properties of the seismogenic zone or to topographic features on the down-going plate(6-9). Structures in the overriding plate may also influence segmentation(10-13), but their importance has been dismissed. Here, we investigate the links between interface segmentation at the North Chile seismic gap(14) and a crustal-scale fault structure in the overriding plate that forms a coastal scarp of about 1 km in height(10,15). We use satellite interferometric synthetic aperture radar (InSAR) and Global Positioning System (GPS) data to measure interseismic surface deformation between 2003 and 2009 and compare the deformation with rupture extent during well-documented earthquakes(5,16-18). From these data we infer the degree of coupling and segmentation at depth. We find that along a 500-km-long segment, the base of the strongly coupled seismogenic zone correlates with the line of the surface coastal scarp and follows the outline of the Mejillones Peninsula. This correlation implies that large-scale structures in the overriding plate can influence the frictional properties of the seismogenic zone at depth. We therefore suggest that the occurrence of megathrust earthquakes in northern Chile is controlled by the surface structures that build Andean topography.
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Artículo de publicación ISI.
Patrocinador
French National
Research Agency (ANR-05-CATT-014, ANR-06-CATT-010-01), CNRS/INSU PNTS
project, BQR IPGP and the LABEX UnivEarthS (Sorbonne Paris Cité, IPGP).
Development and analysis of the CAnTO GPS network was partly supported
by the Gordon and Betty Moore Foundation.
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Nature Geoscience. 2013 (6)
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