T. Theye and A. Simonetti, Petrological vestiges of the Late Jurassic-Early Cretaceous transition from rift to back-arc basin in southernmost Chile: New age and geochemical data from the Capitán Aracena, Carlos III, and Tortuga ophiolitic complexes, Geochem. J, vol.47, pp.201-217, 2013.

S. W. Carey, A tectonic approach to continental drift, Continental Drift: A symposium ed. University of Tasmania, 1958.

A. Chauvin, Y. Garcia, P. Lanos, and F. Laubenheimer, Paleointensity of the geomagnetic field recovered on archaeomagnetic sites from France, Physics of the Earth and Planetary Interiors, vol.120, issue.1-2, pp.111-136, 2000.
DOI : 10.1016/S0031-9201(00)00148-5

URL : https://hal.archives-ouvertes.fr/halshs-00396742

I. W. Dalziel, M. J. De-wit, and K. F. Palmer, Fossil marginal basin in the southern Andes, Nature, vol.82, issue.5464, pp.291-294, 1038.
DOI : 10.1038/250291a0

J. P. Cogné, TRM deviations in anisotropic assemblages of multidomain magnetite, Geophysical Journal International, vol.91, issue.3, pp.1013-1023, 1987.
DOI : 10.1111/j.1365-246X.1987.tb01677.x

J. P. Cogné, Strain-induced AMS in the granite of Flamanville and its effects upon TRM acquisition, Geophys. J, vol.92, pp.445-453, 1988.

W. D. Cunningham and W. D. Cunningham, Strike-slip faults in the southernmost Andes and the development of the Patagonian Orocline Orogenesis at the southern tip of the Americas: the structural evolution of the Cordillera Darwin metamorphic complex, southernmost Chile, Tectonics Tectonophysics, vol.1294, issue.244, pp.169-186, 1029.

P. Orocline, New paleomagnetic data from the Andean Magmatic Arc in Tierra del Fuego, Chile, J. Geophys. Res, vol.96, issue.B10, pp.16061-16067, 9101498.

I. W. Dalziel, M. J. De-wit, and K. F. Palmer, Fossil marginal basin in the southern Andes, Nature, vol.82, issue.5464, pp.291-294, 1038.
DOI : 10.1038/250291a0

I. W. Dalziel, R. H. Dott, R. D. Winn, and R. L. Bruhn, Tectonic relations of, 1975.

A. E. Nairn and F. G. Stehli, The Ocean Basins and margins: I. The South Atlantic

I. W. Dalziel, R. Kligfield, W. Lowrie, and N. O. Opdyke, Paleomagnetic data from the southernmost Andes and the Antarctandes, Implications of Continental drift to the Earth Sciences, pp.37-101, 1973.

I. W. Dalziel, L. A. Lawver, I. O. Norton, and L. M. Gahagan, The Scotia Arc, 2013.

R. H. Dott, R. D. Winn, M. J. Dewit, and R. L. Bruhn, Tectonic and sedimentary significance of Cretaceous Tekenika Beds of Tierra del Fuego, Nature, vol.4, issue.5603, pp.620-622, 1038.
DOI : 10.1038/266620a0

D. J. Dunlop and W. Jokat, High-temperature susceptibility of magnetite: a new pseudo-single-domain effect, Geophysical Journal International, vol.199, issue.2, pp.707-716, 2014.
DOI : 10.1093/gji/ggu247

F. Hervé, H. Miller, and C. Pimpirev, Antarctica: Contributions to global earth sciences, Patagonia ? Antarctica Connections before Gondwana Break-Up, pp.215-226, 2005.

. South-patagonian and . Batholith, 150 My of granite magmatism on a plate margin, Lithos, vol.97, pp.373-394

. Fuego, Chile: timing and tectonic implications, J. Geol. Soc, vol.141, pp.909-917

S. E. Jackson, N. J. Pearson, W. L. Griffin, and E. A. Belousova, The application of laser ablation-inductively coupled plasma-mass spectrometry to in situ U???Pb zircon geochronology, Chemical Geology, vol.211, issue.1-2, pp.47-69, 2004.
DOI : 10.1016/j.chemgeo.2004.06.017

V. Jelínek, Statistical processing of anisotropy of magnetic susceptibility measured on groups of specimens, Studia Geophysica et Geodaetica, vol.50, issue.1, pp.50-62, 1978.
DOI : 10.1007/BF01613632

H. R. Katz and W. A. Watters, Geological investigation of the Yahgan Formation (Upper Mesozoic) and associated igneous rocks of Navarino Island, Southern Chile Orogenic shortening and the origin of the Patagonian orocline (56° S.Lat), New Kraemer, P.E. J. South Am. Earth Sci, vol.15, issue.02, pp.731-748, 1966.

Y. Lagabrielle, Y. Goddéris, Y. Donnadieu, J. Malavieille, and M. Suarez, The tectonic history of Drake Passage and its possible impacts on global climate, Earth and Planetary Science Letters, vol.279, issue.3-4, 2009.
DOI : 10.1016/j.epsl.2008.12.037

URL : https://hal.archives-ouvertes.fr/hal-00413525

W. Lowrie, Identification of ferromagnetic minerals in a rock by coercivity and unblocking temperature properties, Geophysical Research Letters, vol.16, issue.2, pp.159-162, 1990.
DOI : 10.1029/GL017i002p00159

W. Lowrie, A. M. Hirt, and R. Kligfield, Effects of tectonic deformation on the remanent magnetization of rocks, Tectonics, vol.283, issue.5, pp.713-722, 1986.
DOI : 10.1029/TC005i005p00713

K. R. Ludwig, On the Treatment of Concordant Uranium-Lead Ages, Geochimica et Cosmochimica Acta, vol.62, issue.4, 1998.
DOI : 10.1016/S0016-7037(98)00059-3

K. R. Ludwig, Isoplot/Ex Version 2.49. A Geochronological Toolkit for Microsoft Excel, Berker Geochronolgy Center, Special Publication, vol.1, pp.1-55, 2001.

M. Maffione, F. Speranza, C. Faccenna, and E. Rossello, Paleomagnetic evidence for a pre-early Eocene (???50Ma) bending of the Patagonian orocline (Tierra del Fuego, Argentina): Paleogeographic and tectonic implications, Earth and Planetary Science Letters, vol.289, issue.1-2, pp.273-286, 2010.
DOI : 10.1016/j.epsl.2009.11.015

K. T. Maloney, G. L. Clarke, K. A. Klepeis, C. M. Fanning, and W. Wang, Crustal growth during back-arc closure: Cretaceous exhumation history of Cordillera Darwin, southern Patagonia, Journal of Metamorphic Geology, vol.5, issue.B11, pp.649-672, 2011.
DOI : 10.1111/j.1525-1314.2011.00934.x

P. J. Markwick and P. J. Valdes, Palaeo-digital elevation models for use as boundary conditions in coupled ocean???atmosphere GCM experiments: a Maastrichtian (late Cretaceous) example, Palaeogeography, Palaeoclimatology, Palaeoecology, vol.213, issue.1-2, pp.37-63, 2004.
DOI : 10.1016/S0031-0182(04)00330-X

S. Snyder, Along-strike variability of back-arc basin collapse and the initiation of sedimentation in the Magallanes foreland basin, southernmost Andes (53-54.5°S), Tectonics, vol.30, pp.10-1029, 2011.

C. A. Miller, M. Barton, R. E. Hanson, and T. H. Fleming, An Early Cretaceous volcanic arc/marginal basin transition zone, Peninsula hardy, southernmost Chile, Journal of Volcanology and Geothermal Research, vol.63, issue.1-2, 1994.
DOI : 10.1016/0377-0273(94)90017-5

H. Miller, The position of Antarctica within Gondwana in the ligh of, 1983.

R. L. Palaezoic-orogenic-development-oliver, P. R. James, and J. B. Jago, Antarctic Earth Science, Australian Academy of Sciences, pp.579-581

C. Mpodozis and L. Rojas, Orogénesis en los Andes Patagónicos Australes de Tierra del Fuego: Cierre de una "cuenca marginal" o colisión intracontinental?, XI Congreso Geológico Chileno, pp.7-11, 2006.

S. B. Mukasa and I. W. Dalziel, Southernmost Andes and South Georgia Island, North Scotia Ridge: Zircon U-Pb and muscovite age constraints on tectonic evolution of Southwestern Gondwanaland, Journal of South American Earth Sciences, vol.9, issue.5-6, pp.349-365, 1996.
DOI : 10.1016/S0895-9811(96)00019-3

E. P. Nelson, Post-tectonic uplift of the Cordillera Darwin orogenic core complex: evidence from fission track geochronology and closing temperature-time relationships, Journal of the Geological Society, vol.139, issue.6, pp.755-761, 1982.
DOI : 10.1144/gsjgs.139.6.0755

O. Neill, C. Müller, D. Steinberger, and B. , On the uncertainties in hot spot reconstructions and the significance of moving hot spot reference frames, 2005.

E. Olivero and N. Malumián, Mesozoic-Cenozoic stratigraphy of the Fuegian Andes, Argentina. Geol. Acta, vol.6, pp.5-18, 2008.

V. M. Fernández, First archaeomagnetic field intensity data from Ethiopia Phys. Earth Planet. Inter, Africa, vol.242, pp.24-35, 2000.

H. Lippai and J. Franciscovilas, Palaeomagnetism of Mesozoic magmatic bodies of the Fuegian Cordillera: implications for the formation of the Patagonian Orocline, Geol. Soc, 2015.

P. R. Renne, G. Balco, K. R. Ludwig, R. Mundil, K. P. Min et al., Response to the comment by W.H. Schwarz et al. on ???Joint determination of 40K decay constants and 40Ar???/40K for the Fish Canyon sanidine standard, and improved accuracy for 40Ar/39Ar geochronology??? by P.R. Renne et al. (2010), Geochimica et Cosmochimica Acta, vol.75, issue.17, pp.5097-5100, 2010.
DOI : 10.1016/j.gca.2011.06.021

P. Robion, S. Grelaud, and D. Frizon-de-lamotte, Pre-folding magnetic fabrics in fold-and-thrust belts: Why the apparent internal deformation of the sedimentary rocks from the Minervois basin (NE ??? Pyrenees, France) is so high compared to the Potwar basin (SW ??? Himalaya, Pakistan)?, Sedimentary Geology, vol.196, issue.1-4, pp.181-200, 2007.
DOI : 10.1016/j.sedgeo.2006.08.007

J. C. Roddick, R. A. Cliff, and D. C. Rex, The evolution of excess argon in alpine biotites ??? A40Ar-39Ar analysis, Earth and Planetary Science Letters, vol.48, issue.1, pp.185-208, 1980.
DOI : 10.1016/0012-821X(80)90181-8

G. Ruffet, G. Feraud, and M. Amouric, Comparison of 40Ar-39Ar conventional and laser dating of biotites from the North Tr??gor Batholith, Geochimica et Cosmochimica Acta, vol.55, issue.6, pp.1675-1688, 1991.
DOI : 10.1016/0016-7037(91)90138-U

. I. Navari and D. Sheeted, 13/09 212.2 - 65, pp.100-115

H. Pen, 5161* Sedimentary 18, 18246.

H. Pen, 5162* Sedimentary 12

P. Cloue and . Tonalite, 3 P /~60-70 Ma Intrusive Rocks: Ballenero and O'Brian Channel O'Brian C. CB17 Gabbro 18

C. Ballenero, Ma Intrusive Rocks: Ballenero Channel and Brecknock Peninsula Ballenero C, pp.224-229

C. Ballenero and . Granodiorite, ~50-60 Ma Intrusive Rocks: Unknown age In Situ Tilt Corrected Location Site Lithology NN, ~50-60 Ma Brecknock P. CB33 Tonalite 13/09 334.5 -73.7 3.1 27914 48.4 82.4 69.2 39.0 4.9 69.2 u /Unknown Ballenero C. CB30# Int 13CB35* result using samples from sites CB35 and CB36 #: discarded results, see text for explanation Fuego TU28 54, pp.89-125

. Cunningham, BCSA: Beagle Channel South Arm Refereces: TS. This Study 1, 1991.