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Structural and paleomagnetic evidence for non-rotational kinematics of the South Pyrenean Frontal Thrust at the western termination of the External Sierras (southwestern central Pyrenees)

AutorOliva-Urcia, Belén ; Casas, A. M. ; Pueyo, E. L.; Pocovi-Juan, A.
Palabras claveNon-rotational
South-Pyrenean Frontal thrust
Vertical Axis Rotations
Gradient of shortening
Balanced and restored cross-section
Paleomagnetism
Fecha de publicación2012
EditorCSIC - Instituto de Ciencias de la Tierra Jaume Almera (ICTJA)
CitaciónActa Geologica Eslovaca 10(2): 125-144 (2012)
Resumen[EN] The definition of the structure and kinematics of the South-Pyrenean Frontal thrust, to the west of its westernmost outcrop in the External Sierras is the goal of this work. The methodology used is based on the construction and restoration of three balanced cross-sections. In addition to that, paleomagnetic analyses are applied to unravel possible vertical axis rotations linked to thrust kinematics. Stepwise thermal demagnetizations of 22 new sites together with previously published data from 25 sites (sampled in Bartonian-Priabonian sediments) define reliable primary directions in the region allowing for potential vertical axis rotations estimation. The comparison between the deformed and the pre-deformational states in the cross-sections agrees with the paleomagnetic data in that neither gradient of shortening, nor significant vertical axis rotations can be invoked to explain the along-strike changes of the main structures (folds and thrusts) linked to the South-Pyrenean Frontal thrust, west of the western termination of the External Sierras. Therefore, these changes are here interpreted as the result of a wedge thrust in the Paleozoic basement, whose displacements in transferred to the Mesozoic-Tertiary cover through the Upper Triassic detachment level. This non-rotational kinematics of deformation implies a change of deformational style with respect to the External Sierras, where clockwise vertical axis rotations and gradient of shortening linked to rotational kinematics are found to be controlled by the Upper Triassic detachment level.
Versión del editorhttp://dx.doi.org/10.1344/105.000001704
URIhttp://hdl.handle.net/10261/100615
DOI10.1344/105.000001704
ISSN1338-0044
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