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Evolutionary model for Alpine Corsica: mechanism for ophiolite emplacement and exhumation of high‐pressure rocks
Author(s) -
Malavieille,
Chemenda,
Larroque
Publication year - 1998
Publication title -
terra nova
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.353
H-Index - 89
eISSN - 1365-3121
pISSN - 0954-4879
DOI - 10.1046/j.1365-3121.1998.00208.x
Subject(s) - geology , subduction , ophiolite , continental crust , nappe , continental margin , eclogitization , continental collision , oceanic crust , paleontology , gneiss , earth science , tectonics , geochemistry , metamorphic rock
A tectonic model of Alpine Corsica is proposed based on geological studies. Its evolution starts after the Jurassic with intraoceanic subduction, followed by mid‐Cretaceous subduction of the European continental margin under the oceanic segment of the Adriatic plate. After subduction of the continental crust to a depth of ≈ 150 km, slices of crustal material are buoyantly uplifted together with high‐pressure oceanic rocks (ophiolites and ‘schistes lustrés’). High pressure–low temperature continental gneiss units overthrust the outer segments of the European crust, while producing a normal sense motion along the upper surface of the rising crustal body. During the Eocene, the closure of the remnant Ligurian oceanic basin separating the proto Corsican belt and Adria, resulted in a second orogenic phase with the emplacement of unmetamorphosed ophiolitic nappes which overthrust the previously exhumed and eroded HP belt. This Corsican model suggests an original evolutionary path for orogenic belts when continental collision is preceded by intraoceanic subduction.

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