Palaeozoic evolution of the Variscan Vosges Mountains

Author:

Skrzypek Etienne1234,Schulmann Karel25,Tabaud Anne-Sophie2,Edel Jean-Bernard2

Affiliation:

1. Department of Geology and Mineralogy, Graduate School of Science, Kyoto University, Kitashirakawa-Oiwakecho Sakyo-ku, 606-8502 Kyoto, Japan

2. Ecole et Observatoire des Sciences de la Terre - UMR 7516, Université de Strasbourg 1, rue Blessig, 67084 Strasbourg, France

3. Institute of Geological Sciences, University of Wrocław, Pl. Maksa Borna 9, 50-204 Wrocław, Poland

4. BRGM, BP 36009, Orléans cedex 02, France

5. Centre for Lithospheric Research, Czech Geological Survey, 11821 Prague 1, Czech Republic

Abstract

AbstractA geological synthesis of the Palaeozoic Vosges Mountains (NE France) is presented using existing observations and new data. The geodynamic evolution involves: (1) Early Palaeozoic sedimentation and magmatism; (2) Late Devonian subduction triggering back-arc spreading; (3) early Lower Carboniferous continental subduction, continent–continent collision and polyphase deformation and metamorphism of the orogenic root; and (4) late Lower Carboniferous orogenic collapse driven by thermal weakening of the middle crust. The evolution is integrated within the framework of the European Variscan Belt. The Northern Vosges comprise sediments of Rhenohercynian affinity separated from Teplá-Barrandian metasediments by a Lower Carboniferous magmatic arc. The latter is correlated with the Mid-German Crystalline Rise, and is ascribed to the south-directed subduction of the Rhenohercynian Basin. The Saxothuringian–Moldanubian suture is thought to be obliterated by the magmatic arc, while the Lalaye–Lubine Fault is interpreted as the Teplá-Barrandian–Moldanubian boundary. The Central Vosges are paralleled with the Moldanubian domain of the Bohemian Massif where identical lithologies record the Devonian–Carboniferous SE-directed subduction of the Saxothuringian passive margin below the Moldanubian upper plate. The Southern Vosges represent the upper Moldanubian crust and are linked to the southern Black Forest. The presence of an oceanic domain to the south of the Vosges–Black Forest remains unclear.Supplementary material:List of radiometric ages used for probability plots is available at http://www.geolsoc.org.uk/SUP18734.

Publisher

Geological Society of London

Subject

Geology,Ocean Engineering,Water Science and Technology

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