OPPOSITELY DIRECTED PAIRS OF PROPAGATING RIFTS IN BACK-ARC BASINS: DOUBLE SALOON DOOR SEAFLOOR SPREADING DURING SUBDUCTION ROLLBACK

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dc.contributor.author Martin A.K.
dc.date.accessioned 2025-03-15T04:58:38Z
dc.date.available 2025-03-15T04:58:38Z
dc.date.issued 2006
dc.identifier https://elibrary.ru/item.asp?id=31337425
dc.identifier.citation Tectonics, 2006, 25, 3, TC3008
dc.identifier.issn 0278-7407
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/48483
dc.description.abstract When a continent breaks up into two plates, which then separate from each other about a rotation pole, it can be shown that if initial movement is taken up by lithospheric extension, asthenospheric breakthrough and oceanic accretion propagate toward the pole of rotation. Such a propagating rift model is then applied to an embryonic centrally located rift which evolves into two rifts propagating in opposite directions. The resultant rhombic shape of the modeled basin, initially underlain entirely by thinned continental crust, is very similar to the Oligocene to Burdigalian back-arc evolution of the Valencia Trough and the Liguro-Provencal Basin in the western Mediterranean. Existing well and seismic stratigraphic data confirm that a rift did initiate in the Gulf of Lion and propagated southwest into the Valencia Trough. Similarly, seismic refraction, gravity, and heat flow data demonstrate that maximum extension within the Valencia Trough/ Liguro-Provencal Basin occurred in an axial position close to the North Balearic Fracture Zone. The same model of oppositely propagating rifts, when applied to the Burdigalian/Langhian episode of back-arc oceanic accretion within the Liguro-Provencal and Algerian basins, predicts a number of features which are borne out by existing geological and geophysical, particularly magnetic data. These include the orientation of subparallel magnetic anomalies, presumed to be seafloor spreading isochrons, in both basins; concave-to-the-west fracture zones southwest of the North Balearic Fracture Zone, and concave-to-the-east fracture zones to its northeast; a spherical triangular area of NW oriented seafloor spreading isochrons southwest of Sardinia; the greater NW extension of the central (youngest?) magnetic anomaly within this triangular area, in agreement with the model-predicted northwestward propagation of a rift in this zone; successively more central (younger) magnetic anomalies abutting thinned continental crust nearer to the pole of rotation in the Liguro-Provencal Basin. The latter feature demonstrates that a rift also propagated northeast in the Liguro-Provencal Basin, at least in its oceanic accretion phase of development. An adaptation of an existing model for subduction slab detachment occurring along the North African margin in the late Burdigalian/Langhian, proposes propagation in opposite directions of the slab tear. The resultant rhombic slab detachment is closely associated in space and time with the rhombic form of the Algerian/Liguro-Provencal basins, suggesting a cause and effect relationship. Copyright 2006 by the American Geophysical Union.
dc.subject Oligocene
dc.subject Langhian
dc.subject Burdigalian
dc.title OPPOSITELY DIRECTED PAIRS OF PROPAGATING RIFTS IN BACK-ARC BASINS: DOUBLE SALOON DOOR SEAFLOOR SPREADING DURING SUBDUCTION ROLLBACK
dc.type Статья
dc.identifier.doi 10.1029/2005TC001885
dc.subject.age Cenozoic::Paleogene::Oligocene
dc.subject.age Кайнозой::Палеоген::Олигоцен
dc.subject.age Cenozoic::Neogene::Miocene::Langhian
dc.subject.age Кайнозой::Неоген::Миоцен::Лангский
dc.subject.age Cenozoic::Neogene::Miocene::Burdigalian
dc.subject.age Кайнозой::Неоген::Миоцен::Бурдигальский


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