Petrologic diversity of Plio-Quaternary post-subduction volcanism in northwestern Mexico: An example from Isla San Esteban, Gulf of California

Author:

Calmus Thierry1,Pallares Carlos2,Maury René C.2,Bellon Hervé2,Pérez-Segura Efrén3,Aguillón-Robles Alfredo4,Carreño Ana-Luisa5,Bourgois Jacques6,Cotten Joseph2,Benoit Mathieu2

Affiliation:

1. Estación Regional del Noroeste, Instituto de Geología, Universidad Nacional Autónoma de México, 83000, Hermosillo, Son., Mexique.

2. Laboratoire Domaines océaniques, UMR-CNRS 6538, Institut Universitaire Européen de la Mer, Université de Bretagne Occidentale, 29238 Brest cedex 3, France.

3. Departamento de Geología, Universidad de Sonora, Hermosillo, Son., Mexique.

4. Instituto de Geología, Universidad Autónoma de San Luis Potosí, San Luis Potosí, SLP., Mexique.

5. Instituto de Geología, Universidad Nacional Autónoma de México, 04510, México D.F., Mexique.

6. Laboratoire Géosciences Azur, UMR-CNRS 6526, Case 124, Université de Paris VI, 4, Place Jussieu, 75252, Paris Cedex 5, France.

Abstract

AbstractDuring the Plio-Quaternary, numerous volcanic centres of contrasted compositions were emplaced in the Baja California Peninsula and adjacent Gulf of California. The 43 km2 Isla San Esteban (28o 42 N and 112o 34’ W), located in the central part of the gulf near the Pliocene extinct spreading centre of Lower Tiburón basin, is mostly made of andesitic, dacitic and rhyolitic subaerial lava flows, domes, and pyroclastic deposits. A new geological sketch map of the island is presented, as well as new K-Ar ages ranging from 4.5 to 2.5 Ma. Isla San Esteban lavas belong to two nearly contemporaneous magmatic series emplaced within an extensional tectonic framework related to the continental breakoff followed by the progressive oceanization along the Gulf of California. The first one is medium-K calc-alkaline, and its magmas evolved from basaltic andesites to rhyolites by fractionation of plagioclase, pyroxenes, titanomagnetite and apatite. The second one includes genuine adakites, and dacites derived from them through separation of plagioclase plus amphibole. We propose that these adakites originated from the partial melting of oceanic crust slivers, incorporated to the subcontinental lithospheric mantle during the Late Miocene opening of a slab window followed by the detachment of the deep part of the Farallon slab. The high thermal flux linked to the opening of the Gulf would have triggered their melting, as well as that of the subduction-modified mantle, which represents the likely source of the associated calc-alkaline lavas.

Publisher

EDP Sciences

Subject

Geology

Reference106 articles.

1. Aguillon-Robles A. (2002). “Subduction de dorsale et évolution du magmatisme associé: exemple de la Basse Californie (Mexique) du Miocène au Quaternaire.” Unpublished Ph. D. thesis, Université de Bretagne Occidentale, Brest, 214 p.

2. Late Miocene adakites and Nb-enriched basalts from Vizcaino Peninsula, Mexico: indicators of East Pacific Rise subduction below southern Baja California ?;Aguillon-Robles;Geology,2001

3. Fault tectonics of the Baja California Peninsula and the opening of the Sea of Cortez, Mexico;Angelier;J. Struct. Geol,1981

4. Structure of the rift basins in the central Gulf of California: kinematic implications for oblique rifting;Aragon-Arreola;Tectonophysics,2005

5. Generation of sodium-rich magmas from newly underplated basaltic crust;Atherton;Nature,1993

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