A review of cretaceous smooth-slopes extensional basins along the Iberia-Eurasia plate boundary: How pre-rift salt controls the modes of continental rifting and mantle exhumation
Tài liệu tham khảo
Allemand, 1989, Symétrie et asymétrie des rifts et mécanismes d’amincissement de la lithosphère, Bull, Soc. Géol. Fr., 5, 445, 10.2113/gssgfbull.V.3.445
Andersen, 2012, Evidence for hyperextension along the pre-Caledonian margin of Baltica, J. Geol. Soc. Lond., 169, 601, 10.1144/0016-76492012-011
Asti, 2019, How do continents deform during mantle exhumation? Insights from the northern Iberia inverted paleopassive margin, western Pyrenees (France), Tectonics, 38, 1666, 10.1029/2018TC005428
Ayala, 2015, A review of the current knowledge of the crustal and lithospheric structure of the Valencia Trough Basin, Bol. Geol. Min., 126, 533
Azambre, 1976, Le magmatisme alcalin d’age cretace, dans les Pyrenees occidentales et l’Arc basque; ses relations avec le metamorphisme et la tectonique, Bull. Société Géologique Fr., 7, 1725, 10.2113/gssgfbull.S7-XVIII.6.1725
Bernus-Maury, 1984
Biteau, 2006, The aquitaine basin, Pet. Geosci., 12, 247, 10.1144/1354-079305-674
Bois, 1997, Geologic contribution of the Bay of Biscay deep seismic survey: a summary of the main scientific results, a discussion of the open questions and suggestions for further investigation, Mém Soc Géol Fr., 193
Brun, 1999, Narrow rifts versus wide rifts: Inferences for the mechanics of rifting from laboratory experiments, Philos. Trans. R. Soc. London, Ser. A, 357, 695, 10.1098/rsta.1999.0349
Brun, 1996, Mantle exhumation at passive margin, Earth Planet. Sci. Lett., 142, 161, 10.1016/0012-821X(96)00080-5
Brun, 2011, Salt tectonics at passive margins: geology versus models, Mar. Pet. Geol., 28, 1123, 10.1016/j.marpetgeo.2011.03.004
Brun, 1994, Extensional gneiss domes and detachment fault systems; structure and kinematics, Bull. Société Géologique Fr., 165, 519
Brun, 1991, Crustal structure of the southern Rhine Graben from ECORS-DEKORP seismic reflection data, Geology, 19, 758, 10.1130/0091-7613(1991)019<0758:CSSOTS>2.3.CO;2
Brune, 2014, Rift migration explains continental margin asymmetry and crustal hyper-extension, Nat. Commun., 5, 10.1038/ncomms5014
Buck, 1991, Modes of continental lithospheric extension, J. Geophys. Res., 96, 20,161, 10.1029/91JB01485
Buck, 1988, Thermal consequences of lithospheric extension: pure and simple, Tectonics, 7, 213, 10.1029/TC007i002p00213
Cadenas, 2017, The Asturian Basin within the North Iberian margin (Bay of Biscay): seismic characterisation of its geometry and its Mesozoic and Cenozoic cover, Basin Res., 29, 521, 10.1111/bre.12187
Canérot, 1988, 306, 1099
Canérot, 1989, Rifting éocrétacé et halocinèse sur la marge ibérique des Pyrénées Occidentales (France), Conséquences structurales. Bull. Cent. Rech. Explor.-Prod. Elf-Aquitaine, 13, 87
Canérot, 2017, The pull apart-type Tardets-Mauléon Basin, a key to understand the formation of the Pyrenees, Bull. Société Géologique Fr., 188, 35, 10.1051/bsgf/2017198
Canérot, 1989, Le diapir du Lichançumendy (Pyrénées-Atlantiques), nouvel élément de la marge ibérique des Pyrénées occidentales, Comptes Rendus Académie Sci. Sér. 2 Mécanique Phys. Chim. Sci. Univers Sci. Terre, 308, 1467
Canérot, 1993, Diapirisme crétacé sur la marge ibérique des Pyrénées occidentales; exemple du pic de Lauriolle; comparaisons avec l’Aquitaine, les Pyrénées centrales et orientales, Bull. Société Géologique Fr., 164, 719
Canérot, 2005, Mesozoic diapirism in the Pyrenean orogen: Salt tectonics on a transform plate boundary, AAPG Bull., 89, 211, 10.1306/09170404007
Capdevila, 1980, 291, 317
Casas, 2009, Multidisciplinary approach to an extensional syncline model for the Mesozoic Cameros Basin (N Spain), Tectonophysics, 470, 3, 10.1016/j.tecto.2008.04.020
Casas-Sainz, 1998, Extensional subsidence, contractional folding and thrust inversion of the eastern Cameros basin, northern Spain, Geol. Rundsch., 86, 802, 10.1007/s005310050178
Castanares, 2001, The Submarine Volcanic System of the Errigoiti Formation (Albian-Santonian of the Basque-Cantabrian Basin, Northern Spain): Stratigraphic Framework, Facies, and Sequences, J. Sediment. Res., 71, 318, 10.1306/080700710318
Chalmers, 2001, Development of the continental margins of the Labrador Sea: a review, 187, 77
Chenin, 2015, Assessing the impact of orogenic inheritance on the architecture, timing and magmatic budget of the North Atlantic rift system: a mapping approach, J. Geol. Soc. Lond., 10.1144/jgs2014-139
Chevrot, 2015, The Pyrenean architecture as revealed by teleseismic P-to-S converted waves recorded along two dense transects, Geophys. J. Int., 200, 1094, 10.1093/gji/ggu400
Chevrot, 2018, The non-cylindrical crustal architecture of the Pyrenees, Sci. Rep., 8, 10.1038/s41598-018-27889-x
Choukroune, 1976, Strain patterns in the Pyrenean chain, Philosop. Trans. Royal Soci. Lond. A: Math. Phys. Eng. Sci., 283, 271, 10.1098/rsta.1976.0084
Choukroune, 1976, Structure et évolution tectonique de la zone nord pyrénéenne, Mem. Soc. Geol. Fr., 127, 1
Choukroune, 1978, Tectonique des plaques et Pyrénées; sur le fonctionnement de la faille transformante nord-pyrénéenne; comparaisons avec des modèles actuels, Bull. Société Géologique Fr., 7, 689, 10.2113/gssgfbull.S7-XX.5.689
Choukroune, 1989, The ECORS Pyrenean deep seismic profile reflection data and the overall structure of an orogenic belt, Tectonics, 8, 23, 10.1029/TC008i001p00023
Clerc, 2014, Thermal control on the modes of crustal thinning leading to mantle exhumation: Insights from the cretaceous Pyrenean hot paleomargins, Tectonics, 33, 1340, 10.1002/2013TC003471
Clerc, 2015, Ductile extensional shear zones in the lower crust of a passive margin, Earth Planet. Sci. Lett., 431, 1, 10.1016/j.epsl.2015.08.038
Clerc, 2015, High-temperature metamorphism during extreme thinning of the continental crust: a reappraisal of the North Pyrenean passive paleomargin, Solid Earth, 6, 643, 10.5194/se-6-643-2015
Clerc, 2016, Basement – Cover decoupling and progressive exhumation of metamorphic sediments at hot rifted margin. Insights from the Northeastern Pyrenean analog, Tectonophysics, 686, 82, 10.1016/j.tecto.2016.07.022
Clerc, 2018, Rifted margins: Ductile deformation, boudinage, continentward-dipping normal faults and the role of the weak lower crust, Gondwana Res., 53, 20, 10.1016/j.gr.2017.04.030
Corre, 2016, Deformation associated with mantle exhumation in a distal, hot passive margin environment: New constraints from the Saraillé Massif (Chaînons Béarnais, North-Pyrenean Zone), Compt. Rendus Geosci., 348, 279, 10.1016/j.crte.2015.11.007
Cuevas, 1999, The discovery of scapolite marbles in the Biscay Synclinorium (Basque-Cantabrian basin, Western Pyrenees): geodynamic implications, Terra Nova, 11, 259, 10.1046/j.1365-3121.1999.00255.x
Damotte, 1998, 173, 104
Dañobeitia, 1992, Deep crustal configuration of the Valencia trough and its Iberian and Balearic borders from extensive refraction and wide-angle reflection seismic profiling, Tectonophysics, 203, 37, 10.1016/0040-1951(92)90214-Q
Dauteuil, 1989, Une circulation de fluides de haute-température à l’origine du métamorphisme crétacé nord-pyrénéen, Geodin. Acta, 3, 237, 10.1080/09853111.1989.11105190
de Saint Blanquat, 2016, Cretaceous mantle exhumation in the Central Pyrenees: new constraints from the peridotites in eastern Ariège (North Pyrenean zone, France), Compt. Rendus Geosci., 348, 268, 10.1016/j.crte.2015.12.003
Debroas, 1978, Evolution de la fosse du flysch ardoisier de l’Albien supérieur au Sénonien inférieur (zone interne métamorphique des Pyrénées navarro-languedociennes), Bull. Soc. Géol. Fr., XX, 639, 10.2113/gssgfbull.S7-XX.5.639
Debroas, 1990, Le flysch noir albo-cénomanien témoin de la structuration albienne à sénonienne de la Zone nord-pyrénéenne en Bigorre (Hautes-Pyrénées, France), Bull. Soc. Geol. Fr., VI, 273, 10.2113/gssgfbull.VI.2.273
DeFelipe, 2017, Mantle exhumation and metamorphism in the Basque-Cantabrian Basin (N Spain): Stable and clumped isotope analysis in carbonates and comparison with ophicalcites in the North-Pyrenean Zone (Urdach and Lherz), Geochem. Geophys. Geosyst., 18, 631, 10.1002/2016GC006690
Deramond, 1993, Relationships between thrust tectonics and sequence stratigraphy surfaces in foredeeps: model and examples from the Pyrenees (Cretaceous-Eocene, France, Spain), Geol. Soc. Lond. Spec. Publ., 71, 193, 10.1144/GSL.SP.1993.071.01.09
Dercourt, 1986, Geological evolution of the Tethys belt from the Atlantic to the Pamirs since the Lias, Tectonophysics, 123, 241, 10.1016/0040-1951(86)90199-X
Dercourt, 1993, 307
Ducoux, 2019
Duretz, 2015, From symmetric necking to localized asymmetric shearing: the role of mechanical layering, Geology, 43, 711, 10.1130/G36762.1
Duretz, 2019, Numerical modelling of syn-rift salt tectonics during Cretaceous Pyrenean Rifting, Basin Res, 1
Duretz, 2016, The importance of structural softening for the evolution and architecture of passive margins, Sci. Rep., 6, 10.1038/srep38704
Espurt, 2019, Crustal-scale balanced cross-section and restaurations of the Central Pyrenean belt (Nest- Cinca transect): superimposed orogenesis and Pyrenean rift system evolution, Tectonophysics, 764, 25, 10.1016/j.tecto.2019.04.026
Ethève, 2018, Extreme Mesozoic Crustal Thinning in the Eastern Iberia margin: the example of the Columbrets Basin (Valencia Trough), Tectonics, 37, 636, 10.1002/2017TC004613
Fabriès, 1991, Evolution of the Upper Mantle beneath the Pyrenees: evidence from Orogenic Spinel Lherzolite Massifs, J. Petrol., Special_Volume, 55, 10.1093/petrology/Special_Volume.2.55
Fabriès, 1998, Petrogenetic evolution of orogenic lherzolite massifs in the central and western Pyrenees, Tectonophysics, 292, 145, 10.1016/S0040-1951(98)00055-9
Fernández-Lozano, 2019, Shaping of intraplate mountain patterns: the Cantabrian orocline legacy in Alpine Iberia, Lithosphere, 10.1130/L1079.1
Floquet, 1992
Frasca, 2016, Deformation mechanisms in a continental rift up to mantle exhumation. Field evidence from the western Betics, Spain, Mar. Pet. Geol., 76, 310, 10.1016/j.marpetgeo.2016.04.020
Fügenschuh, 2003, Offshore granulites from the Bay of Biscay margins: fission tracks constrain a Proterozoic to Tertiary thermal history, Terra Nova, 15, 337, 10.1046/j.1365-3121.2003.00502.x
Gallart, 1990, Features of deep crustal structure and the onshore-offshore transition at the Iberian flank of the Valencia Trough (Western Mediterranean), J. Geodyn., 12, 233, 10.1016/0264-3707(90)90009-J
García-Mondéjar, 1996, Aptian–Albian tectonic pattern of the Basque–Cantabrian Basin (Northern Spain), Geol. J., 31, 13, 10.1002/(SICI)1099-1034(199603)31:1<13::AID-GJ689>3.0.CO;2-Y
García-Mondéjar, 2004, 282, 111
Gartrell, 1997, Evolution of rift basins and low-angle detachments in multilayer analog models, Geology, 25, 615, 10.1130/0091-7613(1997)025<0615:EORBAL>2.3.CO;2
Gernigon, 2014, Crustal and basin evolution of the southwestern Barents Sea: from Caledonian orogeny to continental breakup: evolution of the Barents Sea, Tectonics, 33, 347, 10.1002/2013TC003439
Golberg, 1990, High temperature-low pressure cretaceous metamorphism related to crustal thinning (Eastern North Pyrenean Zone, France), Contrib. Mineral. Petrol., 104, 194, 10.1007/BF00306443
Golberg, 1988, Caractères pétrologiques et âge du métamorphisme en contexte distensif du bassin sur décrochement de Soria (Crétacé inférieur, Nord Espagne), Comptes Rendus de l'Académie des Sciences Paris, Série, 11, 521
Gong, 2008, The rotation of Iberia during the Aptian and the opening of the Bay of Biscay, Earth Planet. Sci. Lett., 273, 80, 10.1016/j.epsl.2008.06.016
Grool, 2018, Insights into the crustal-scale dynamics of a doubly vergent orogen from a quantitative analysis of its forelands: a case study of the Eastern Pyrenees, Tectonics, 37, 10.1002/2017TC004731
Guimerà, 1995, Inversion of an extensional-ramp basin by a newly formed thrust: the Cameros basin (N. Spain), 88, 433
Guiraud, 1985, A releasing solitary overstep model for the late Jurassic–early cretaceous (Wealdian) Soria strike-slip basin (Northern Spain), 37, 159
Hamilton, 1987, Crustal extension in the Basin and Range Province, southwestern United States, Geol. Soc. Lond. Spec. Publ., 28, 155, 10.1144/GSL.SP.1987.028.01.12
Huismans, 2003, Symmetric and asymmetric lithospheric extension: relative effects of frictional-plastic and viscous strain softening, J. Geophys. Res., 108
Huismans, 2007, 282, 111
Huismans, 2011, Depth-dependent extension, two-stage breakup and cratonic underplating at rifted margins, Nature, 473, 74, 10.1038/nature09988
Huismans, 2014, Rifted continental margins: the case for depth-dependent extension, Earth Planet. Sci. Lett., 407, 148, 10.1016/j.epsl.2014.09.032
James, 1999, Diapirisme et structuration post-triasique des Pyrénées occidentales et de l’Aquitaine méridionale (France), Eclogae Geol. Helveticae, 92, 63
Jammes, 2016, The effect of bimineralic composition on extensional processes at lithospheric scale, Geochem. Geophys. Geosyst., 17, 3375, 10.1002/2016GC006399
Jammes, 2009, Tectono- sedimentary evolution related to extreme crustal thinning ahead of a propagating ocean: the example of the western Pyrenees, Tectonics, 10.1029/2008TC002406
Jammes, 2009, Tectono-sedimentary evolution related to extreme crustal thinning ahead of a propagating ocean: example of the western Pyrenees, Tectonics, 28, 10.1029/2008TC002406
Jammes, 2010, Extreme crustal thinning in the Bay of Biscay and the Western Pyrenees: from observations to modeling, Geochem. Geophys. Geosyst., 11, 10.1029/2010GC003218
Jammes, 2010, 3D architecture of a complex transcurrent rift system: the example of the Bay of Biscay–Western Pyrenees, Tectonophysics, 489, 210, 10.1016/j.tecto.2010.04.023
Jammes, 2010, Interaction between prerift salt and detachment faulting in hyperextended rift systems: the example of the Parentis and Mauléon basins (Bay of Biscay and western Pyrenees), AAPG Bull., 94, 957, 10.1306/12090909116
Jammes, 2015, Localization and delocalization of deformation in a bimineralic material, J. Geophys. Res. Solid Earth, 120, 3649, 10.1002/2015JB011890
Jolivet, 2015, Continental breakup and the dynamics of rifting in back-arc basins: the Gulf of Lion margin: Backarc rift and lower crust extraction, Tectonics, 34, 662, 10.1002/2014TC003570
Lagabrielle, 2008, Submarine reworking of exhumed sub-continental mantle rocks: field evidence from the Lherz peridotites, French Pyrenees: cretaceous exhumation of pyrenean mantle, Terra Nova, 20, 11, 10.1111/j.1365-3121.2007.00781.x
Lagabrielle, 2010, Mantle exhumation, crustal denudation, and gravity tectonics during cretaceous rifting in the Pyrenean realm (SW Europe): Insights from the geological setting of the lherzolite bodies, Tectonics, 29, 10.1029/2009TC002588
Lagabrielle, 2016, Very high geothermal gradient during mantle exhumation recorded in mylonitic marbles and carbonate breccias from a Mesozoic Pyrenean palaeomargin (Lherz area, North Pyrenean Zone, France), Compt. Rendus Geosci., 348, 290, 10.1016/j.crte.2015.11.004
Lagabrielle, 2019, Mantle exhumation at magma-poor passive continental margins. Part I. 3D architecture and metasomatic evolution of a fossil exhumed mantle domain (Urdach lherzolite, North-Western Pyrenees, France), BSGF - Earth Sci. Bull., 190, 8, 10.1051/bsgf/2019007
Lagabrielle, 2019, The mechanisms of mantle exhumation at magma-poor passive continental margins. Part II. Insights from high-displacement, low-angle faults preserved in a fossil distal margin domain (Saraillé lherzolites, north-western Pyrenees, France), BSGF Earth Sci. Bull., 190, 14, 10.1051/bsgf/2019013
Le Pichon, 1971, Une hypothèse d’évolution tectonique du Golfe de Gascogne, Hist. Struct. Golfe Gasc., 2, 11
Lenoble, 1992, La lame extrusive de Pont Suzon (Zone Nord-Pyrénéenne en Vallée d’Aspe): reprise pyrénéenne d’une ride diapirique transverse d’âge crétacé, Comptes Rendus Académie Sci. Sér. 2 Mécanique Phys. Chim. Sci. Univers Sci. Terre, 314, 387
Lister, 1989, The origin of metamorphic core complexes and detachment faults formed during Tertiary continental extension in the northern Colorado River region, U.S.A, J. Struct. Geol., 11, 65 to 94
Lister, 1991, Detachment models for the formation of passive continental margins, Tectonics, 10, 1038, 10.1029/90TC01007
Lopez-Gomez, 2019, New lithostratigraphy for the Cantabrian Mountains: a common tectono-stratigraphic evolution for the onset of the Alpine cycle in the W Pyrenean realm,N Spain, Earth Sci. Rev., 188, 249, 10.1016/j.earscirev.2018.11.008
Lopez-Mir, 2014, Restoration of basins driven by extension and salt tectonics: example from the Cotiella Basin in the Central Pyrenees, J. Struct. Geol., 69, 147, 10.1016/j.jsg.2014.09.022
Manatschal, 2004, New models for evolution of magma-poor rifted margins based on a review of data and concepts from West Iberia and the Alps, Int. J. Earth Sci., 93, 10.1007/s00531-004-0394-7
Manatschal, 2001, The role of detachment faulting in the formation of an ocean-continent transition: insights from the Iberia Abyssal Plain, Geol. Soc. Lond. Spec. Publ., 187, 405, 10.1144/GSL.SP.2001.187.01.20
Manatschal, 2006, What is the tectono-metamorphic evolution of continental break-up: the example of the Tasna Ocean–Continent transition, J. Struct. Geol., 28, 1849, 10.1016/j.jsg.2006.07.014
Mas, 2011, Evolution of an intra-plate rift basin: the Latest Jurassic-Early Cretaceous Cameros Basin (Northwest Iberian Ranges, North Spain)
Masini, 2014, The tectono-sedimentary evolution of a hyper-extended rift basin: the example of the Arzacq–Mauléon rift system (Western Pyrenees, SW France), Int. J. Earth Sci., 103, 1569, 10.1007/s00531-014-1023-8
McClay, 2004, Extensional salt tectonics in a contractional orogen: a newly identified tectonic event in the Spanish Pyrenees, Geology, 32, 737, 10.1130/G20565.1
McKenzie, 1978, Some remarks on the development of sedimentary basins, Earth Planet. Sci. Lett., 40, 25, 10.1016/0012-821X(78)90071-7
Mendia, 1991, High-grade metamorphic rocks and peridotites along the Leiza Fault (Western Pyrenees, Spain), Geol. Rundsch., 80, 93, 10.1007/BF01828769
Michon, 2003, Mode of lithospheric extension: conceptual models from analogue modeling, Tectonics, 22, 1028, 10.1029/2002TC001435
Mohn, 2010, Unravelling the interaction between tectonic and sedimentary processes during lithospheric thinning in the Alpine Tethys margins, Int. J. Earth Sci., 99, 75, 10.1007/s00531-010-0566-6
Mohn, 2012, Necking of continental crust in magma-poor rifted margins: Evidence from the fossil Alpine Tethys margins: necking of continental crust, Tectonics, 31, 10.1029/2011TC002961
Mohn, 2015, 413, 53
Monchoux, 1970
Muñoz, 1992, Evolution of a continental collision belt: ECORS-Pyrenees crustal balanced cross-section, 235
Muñoz, 2002, The Pyrenees, 370
Nagel, 2004, Symmetric alternative to asymmetric rifting models, Geology, 32, 937, 10.1130/G20785.1
Odlum, 2019, Thermotectonic evolution of the North Pyrenean Agly Massif during early cretaceous hyperextension using multi-mineral U-Pb thermochronometry, Tectonics, 38, 10.1029/2018TC005298
Olivet, 1996, La cinématique de la plaque ibérique, Bull. Centres Rech. Explor. Prod. Elf-Aquitaine, 20, 131
Omodeo Salè, 2014, Tectono-stratigraphic evolution of an inverted extensional basin: the Cameros Basin (north of Spain), Int. J. Earth Sci., 103, 1597, 10.1007/s00531-014-1026-5
Ortí, 2017, Triassic evaporites of Iberia: Sedimentological and palaeogeographical implications for the western Neotethys evolution during the Middle Triassic–Earliest Jurassic, Palaeogeogr. Palaeoclimatol. Palaeoecol., 471, 157, 10.1016/j.palaeo.2017.01.025
Osmundsen, 2008, Styles of extension offshore mid-Norway and implications for mechanisms of crustal thinning at passive margins: STYLES OF EXTENSION OFFSHORE NORWAY, Tectonics, 27, 10.1029/2007TC002242
Osmundsen, 2018, Crustal-scale fault interaction at rifted margins and the formation of domain-bounding breakaway complexes: insights from Offshore Norway, Tectonics, 37, 935, 10.1002/2017TC004792
Pedreira, 2007, Three-dimensional gravity and magnetic modeling of crustal indentation and wedging in the western Pyrenees–Cantabrian Mountains, J. Geophys. Res.–Solid Earth, 112, 10.1029/2007JB005021
Pedrera, 2017, Reconstruction of the exhumed mantle across the North Iberian margin by crustal-scale 3-D gravity inversion and geological cross section, Tectonics, 36, 10.1002/2017TC004716
Péron-Pinvidic, 2009, The final rifting evolution at deep magma-poor passive margins from Iberia-Newfoundland: a new point of view, Int. J. Earth Sci., 98, 1581, 10.1007/s00531-008-0337-9
Péron-Pinvidic, 2007, Tectonosedimentary evolution of the deep Iberia-Newfoundland margins: evidence for a complex breakup history, Tectonics, 26, 1, 10.1029/2006TC001970
Pinet, 1987, Deep seismic reflection and refraction profiling along the Aquitaine shelf (Bay of Biscay), Geophys. J. Int., 89, 305, 10.1111/j.1365-246X.1987.tb04423.x
Puigdefàbregas, 1986, Tecto-sedimentary cycles and depositional sequences of the Mesozoic and Tertiary from the Pyrenees, Tectonophysics, 129, 173, 10.1016/0040-1951(86)90251-9
Rat, 1988, The Basque–Cantabrian basin between the Iberian and European plates: some facts but still many problems, Rev. Soc. Geol. Esp., 1, 327
Rat, 1983, Vue sur le Cretacé basco-cantabrique et nord-ibérique. Une marge, son arrière-pays, ses environ. sédimentaires. Mémoires Géol. Univ, Dijon, 9, 191
Rat, 2019, Tectonothermal evolution of the Cameros Basin: implications for Tectonics of North Iberia, Tectonics, 38, 440, 10.1029/2018TC005294
Ravier, 1959, Le métamorphisme des terrains secondaires des Pyrénées
Reston, 1988, Evidence for shear zones in the lower crust offshore Britain, Tectonics, 7, 929, 10.1029/TC007i005p00929
Reston, 2014, An assessment of the cause of the ‘extension discrepancy’ with reference to the West Galicia margin, Basin Res., 26, 135, 10.1111/bre.12042
Reston, 2007, Lithospheric extension from rifting to continental breakup at magma-poor margins: rheology, serpentinisation and symmetry, Int. J. Earth Sci., 96, 1033, 10.1007/s00531-006-0161-z
Reston, 1995, Detachment tectonics during Atlantic rifting: analysis and interpretation of the S reflection, the West Galicia margin, Geol. Soc. Lond. Spec. Publ., 90, 93, 10.1144/GSL.SP.1995.090.01.05
Roca, 2011, The role of the Bay of Biscay Mesozoic extensional structure in the configuration of the Pyrenean orogen: constraints from the MARCONI deep seismic reflection survey, Tectonics, 30, 10.1029/2010TC002735
Roure, 1998, Contribution of the ECORS seismic data to the Pyrenean geology: Crustal architecture and geodynamic evolution of the Pyrenees, Mém. Société Géologique Fr., 173, 37
Rowan, 2014, Passive-margin salt basins: hyperextension, evaporite deposition, and salt tectonics, Basin Res., 26, 154, 10.1111/bre.12043
Ruiz, 2007
Salas, 1993, Mesozoic extensional tectonics, stratigraphy and crustal evolution during the Alpine cycle of the eastern Iberian basin, Tectonophysics, 228, 33, 10.1016/0040-1951(93)90213-4
Salas, 2001, Evolution of the Mesozoic Central Iberian Rift System and its Cainozoic inversion (Iberian chain), 186, 145
Saspiturry, 2019, Symmetry vs. asymmetry of a hyper-thinned rift: example of the Mauléon Basin (Western Pyrenees, France), Mar. Pet. Geol., 104, 86, 10.1016/j.marpetgeo.2019.03.031
Saura, 2016, Rising and falling diapirs, shifting depocenters, and flap overturning in the cretaceous Sopeira and Sant Gervàs subbasins (Ribagorça Basin, southern Pyrenees): Southern Pyrenees cretaceous Diapirism, Tectonics, 35, 638, 10.1002/2015TC004001
Scotese, 2017, Late Permian-Early Jurassic paleogeography of Western Tethys and the world. In Soto et al., eds, Permo-Triassic salt provinces of Europe, North Africa and the Atlantic margins, 57
Sibuet, 2004, Pyrenean orogeny and plate kinematics, J. Geophys. Res. Solid Earth, 109, 10.1029/2003JB002514
Soto, 2017, Permo-Triassic salt provinces of Europe, North Africa and the Atlantic margins: A synthesis, 3
Sutra, 2013, Quantification and restoration of extensional deformation along the Western Iberia and Newfoundland rifted margins, Geochem. Geophys. Geosyst., 14, 2575e2597, 10.1002/ggge.20135
Teixell, 1998, Crustal structure and orogenic material budget in the west Central Pyrenees, Tectonics, 17, 395, 10.1029/98TC00561
Teixell, 2016, The crustal evolution of the west-Central Pyrenees revisited: Inferences from a new kinematic scenario, Compt. Rendus Geosci., 348, 257, 10.1016/j.crte.2015.10.010
Teixell, 2018, Crustal structure and evolution of the Pyrenean-Cantabrian belt: a review and new interpretations from recent concepts and data, Tectonophysics, 724, 146, 10.1016/j.tecto.2018.01.009
Thiébault, 1992, Métamorphisme des évaporites triasiques du versant nord des Pyrénées centrales et occidentales, Bull. Soc. Hist. Nat. Toulouse., 128, 77
Thinon, 2003, Deep structure of the Armorican Basin (Bay of Biscay): a review of Norgasis seismic reflection and refraction data, J. Geol. Soc., 160, 99, 10.1144/0016-764901-103
Tirel, 2008, Dynamics and structural development of metamorphic core complexes, J. Geophys. Res., 113
Tomassimo, 1997, Processing and interpretation in the tau-p domain of the ECORS Bay of Biscay expanding spread profiles, Mém. Société Géologique Fr., 171, 31
Tugend, 2014, Formation and deformation of hyperextended rift systems: Insights from rift domain mapping in the Bay of Biscay-Pyrenees, Tectonics, 33, 1239, 10.1002/2014TC003529
Tugend, 2015, Spatial and temporal evolution of hyperextended rift systems: Implication for the nature, kinematics, and timing of the Iberian-European plate boundary, Geology, 43, 15, 10.1130/G36072.1
Vergés, 2001, Mesozoic evolution and Cainozoic inversion of the Pyrenean rift, Mém. Muséum Natl. Hist. Nat., 186, 187
Vielzeuf, 1984, Crustal splitting and the emplacement of Pyrenean lherzolites and granulites, Earth Planet. Sci. Lett., 67, 87, 10.1016/0012-821X(84)90041-4
Vissers, 1997, Mylonitic deformation in upper mantle peridotites of the North Pyrenean Zone (France) : implications for strength and strain localization in the lithosphere, Tectonophysics, 279, 303, 10.1016/S0040-1951(97)00128-5
Wang, 2016, The deep roots of the western Pyrenees revealed by full waveform inversion of teleseismic P waves, Geology, 44, 475, 10.1130/G37812.1
Wernicke, 1981, Low-angle normal faults in the Basin and Range Province: nappe tectonics in an extending orogen, Nature, 291, 645, 10.1038/291645a0
Wernicke, 1985, Uniform-sense normal simple shear of the continental lithosphere, Can. J. Earth Sci., 22, 108, 10.1139/e85-009
Zamora, 2017, Salt Tectonics Within the Offshore Asturian Basin: North Iberian Margin, 353
Ziegler, 1988, 43, 10.1306/99A4D087-3318-11D7-8649000102C1865D