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Structure and serpentinization of the subducting Cocos plate offshore Nicaragua and Costa Rica
Authors
Abers
Alt
+123 more
Barckhausen
Barckhausen
Berge
Bolge
Caldwell
Canales
Cardace
Carlson
Carlson
Carlson
Carlson
Carr
Carr
Carr
Chapple
Christensen
Christeson
Christeson
Conder
Contreras-Reyes
Contreras-Reyes
Coulbourn
D. Lizarralde
Davis
Detrick
Eiler
Escartín
Expedition 309/312 Scientists
Faccenda
Faccenda
Feigenson
Gazel
Gazel
Grevemeyer
Grevemeyer
H. J. A. Van Avendonk
Hacker
Hacker
Hacker
Harris
Harris
Herrstrom
Hess
Hey
Hoernle
Hoernle
Hutnak
Ivandic
Ivandic
Janoušek
Kelemen
Koepke
Langseth
Leeman
Lefeldt
Lefeldt
Little
Lizarralde
Lonsdale
Masson
McCollom
McIntosh
McNutt
Menke
Meschede
Moore
Morris
Morris
Moser
Moser
Noll
P. Denyer
Patino
Peacock
Plank
Protti
Ranero
Ranero
Ranero
Ranero
Rychert
Rüpke
Rüpke
Sadofsky
Sadofsky
Sahling
Sallarès
Sallarès
Sallarès
Schmidt
Schutt
Shipboard Scientific Party
Shipboard Scientific Party
Shipley
Silver
Staudigel
Stolper
Swift
Syracuse
Syracuse
Tenthorey
Tera
Toomey
Ulmer
Van Avendonk
Van Avendonk
Van Avendonk
Van Avendonk
van Keken
van Keken
von Huene
W. S. Holbrook
Wade
Walther
Walther
Walther
Werner
Werner
White
Wilkens
Ye
You
Zelt
Publication date
22 June 2011
Publisher
'American Geophysical Union (AGU)'
Doi
Abstract
Author Posting. © American Geophysical Union, 2011. This article is posted here by permission of American Geophysical Union for personal use, not for redistribution. The definitive version was published in Geochemistry Geophysics Geosystems 12 (2011): Q06009, doi:10.1029/2011GC003592.The Cocos plate experiences extensional faulting as it bends into the Middle American Trench (MAT) west of Nicaragua, which may lead to hydration of the subducting mantle. To estimate the along strike variations of volatile input from the Cocos plate into the subduction zone, we gathered marine seismic refraction data with the R/V Marcus Langseth along a 396 km long trench parallel transect offshore of Nicaragua and Costa Rica. Our inversion of crustal and mantle seismic phases shows two notable features in the deep structure of the Cocos plate: (1) Normal oceanic crust of 6 km thickness from the East Pacific Rise (EPR) lies offshore Nicaragua, but offshore central Costa Rica we find oceanic crust from the northern flank of the Cocos Nazca (CN) spreading center with more complex seismic velocity structure and a thickness of 10 km. We attribute the unusual seismic structure offshore Costa Rica to the midplate volcanism in the vicinity of the Galápagos hot spot. (2) A decrease in Cocos plate mantle seismic velocities from ∼7.9 km/s offshore Nicoya Peninsula to ∼6.9 km/s offshore central Nicaragua correlates well with the northward increase in the degree of crustal faulting outboard of the MAT. The negative seismic velocity anomaly reaches a depth of ∼12 km beneath the Moho offshore Nicaragua, which suggests that larger amounts of water are stored deep in the subducting mantle lithosphere than previously thought. If most of the mantle low velocity zone can be interpreted as serpentinization, the amount of water stored in the Cocos plate offshore central Nicaragua may be about 2.5 times larger than offshore Nicoya Peninsula. Hydration of oceanic lithosphere at deep sea trenches may be the most important mechanism for the transfer of aqueous fluids to volcanic arcs and the deeper mantle.This work was funded by the U.S. National Science Foundation MARGINS program under grants OCE0405556, OCE 0405654, and OCE 0625178
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