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Motion of continental slivers and creeping subduction in the northern Andes
by
Chlieh, M.
, Mothes, P. A.
, Maguiña Mendoza, J. M.
, Martinez, W.
, Audin, L.
, Alvarado, A.
, Martin, X.
, Régnier, M.
, Tran, T.
, Jarrin, P.
, Font, Y.
, Vallée, M.
, Rolandone, F.
, Villegas-Lanza, J. C.
, Cisneros, D.
, Yepes, H.
, Nocquet, J-M.
, Beauval, C.
, Bondoux, F.
, Tavera, H.
in
704/2151/508
/ 704/2151/562
/ Earth Sciences
/ Earth System Sciences
/ Geochemistry
/ Geology
/ Geophysics/Geodesy
/ letter
/ Mountains
/ Sciences of the Universe
2014
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Motion of continental slivers and creeping subduction in the northern Andes
by
Chlieh, M.
, Mothes, P. A.
, Maguiña Mendoza, J. M.
, Martinez, W.
, Audin, L.
, Alvarado, A.
, Martin, X.
, Régnier, M.
, Tran, T.
, Jarrin, P.
, Font, Y.
, Vallée, M.
, Rolandone, F.
, Villegas-Lanza, J. C.
, Cisneros, D.
, Yepes, H.
, Nocquet, J-M.
, Beauval, C.
, Bondoux, F.
, Tavera, H.
in
704/2151/508
/ 704/2151/562
/ Earth Sciences
/ Earth System Sciences
/ Geochemistry
/ Geology
/ Geophysics/Geodesy
/ letter
/ Mountains
/ Sciences of the Universe
2014
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Motion of continental slivers and creeping subduction in the northern Andes
by
Chlieh, M.
, Mothes, P. A.
, Maguiña Mendoza, J. M.
, Martinez, W.
, Audin, L.
, Alvarado, A.
, Martin, X.
, Régnier, M.
, Tran, T.
, Jarrin, P.
, Font, Y.
, Vallée, M.
, Rolandone, F.
, Villegas-Lanza, J. C.
, Cisneros, D.
, Yepes, H.
, Nocquet, J-M.
, Beauval, C.
, Bondoux, F.
, Tavera, H.
in
704/2151/508
/ 704/2151/562
/ Earth Sciences
/ Earth System Sciences
/ Geochemistry
/ Geology
/ Geophysics/Geodesy
/ letter
/ Mountains
/ Sciences of the Universe
2014
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Motion of continental slivers and creeping subduction in the northern Andes
Journal Article
Motion of continental slivers and creeping subduction in the northern Andes
2014
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Overview
Regions of intense continental deformation, termed continental slivers, have been identified in Chile, Bolivia and Ecuador. Analyses of GPS data now identify another large sliver in Peru, the Inca Sliver, that is moving away from a neighbouring sliver in Ecuador—implying that moving continental slivers control the deformation of almost the entire Andean mountain range.
Along the western margin of South America, plate convergence is accommodated by slip on the subduction interface and deformation of the overriding continent
1
,
2
,
3
,
4
,
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6
. In Chile
1
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2
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, Bolivia
6
, Ecuador and Colombia
5
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, continental deformation occurs mostly through the motion of discrete domains, hundreds to thousands of kilometres in scale. These continental slivers are wedged between the Nazca and stable South American plates. Here we use geodetic data to identify another large continental sliver in Peru that is about 300–400 km wide and 1,500 km long, which we call the Inca Sliver. We show that movement of the slivers parallel to the subduction trench is controlled by the obliquity of plate convergence and is linked to prominent features of the Andes Mountains. For example, the Altiplano is located at the boundary of converging slivers at the concave bend of the central Andes, and the extending Gulf of Guayaquil is located at the boundary of diverging slivers at the convex bend of the northern Andes. Motion of a few large continental slivers therefore controls the present-day deformation of nearly the entire Andes mountain range. We also show that a 1,000-km-long section of the plate interface in northern Peru and southern Ecuador slips predominantly aseismically, a behaviour that contrasts with the highly seismic neighbouring segments. The primary characteristics of this low-coupled segment are shared by
∼
20% of the subduction zones in the eastern Pacific Rim.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
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