J. Achache, V. Courtillot, and Z. Y. Xiu, Paleogeographic and tectonic evolution of southern Tibet since Middle Cretaceous time: NEw paleomagnetic data and synthesis, Journal of Geophysical Research: Solid Earth, vol.24, issue.2, pp.311-321, 1984.
DOI : 10.1029/JB089iB12p10311

C. J. Allegre, V. Courtillot, P. Tapponnier, A. Hirn, and M. Mattauer, Structure and evolution of the Himalaya???Tibet orogenic belt, Nature, vol.57, issue.5946, pp.17-22, 1984.
DOI : 10.1038/307017a0

E. Appel and H. C. Soffel, Model for the domain state of Ti-rich titanomagnetites, Geophysical Research Letters, vol.25, issue.3, pp.189-192, 1984.
DOI : 10.1029/GL011i003p00189

M. L. Bazhenov and A. V. Mickolaichuck, Paleomagnetism of Paleogene basalts from the Tien Shan, Kyrgyzstan: rigid Eurasia and dipole geomagnetic field, Earth and Planetary Science Letters, vol.195, issue.1-2, pp.155-166, 2002.
DOI : 10.1016/S0012-821X(01)00586-6

S. Bijaksana and J. P. Hodych, Comparing remanence anisotropy and susceptibility anisotropy as predictors of paleomagnetic inclination shallowing in turbidites from the Scotian rise, Physics and Chemistry of the Earth, vol.22, issue.1-2, pp.189-193, 1997.
DOI : 10.1016/S0079-1946(97)00101-8

D. Bilardello and K. P. Kodama, Measuring remanence anisotropy of hematite in red beds: anisotropy of high-field isothermal remanence magnetization (hf-AIR), Geophysical Journal International, vol.178, issue.3, pp.1260-1272, 2009.
DOI : 10.1111/j.1365-246X.2009.04231.x

D. Bilardello and K. P. Kodama, Rock magnetic evidence for inclination shallowing in the early Carboniferous Deer Lake Group red beds of western Newfoundland, Geophysical Journal International, vol.181, issue.1, pp.275-289, 2010.
DOI : 10.1111/j.1365-246X.2010.04537.x

D. Bilardello and K. P. Kodama, A new inclination shallowing correction of the Mauch Chunk Formation of Pennsylvania, based on high-field AIR results: Implications for the Carboniferous North American APW path and Pangea reconstructions, Earth and Planetary Science Letters, vol.299, issue.1-2, pp.218-227, 2010.
DOI : 10.1016/j.epsl.2010.09.002

D. Bilardello and K. P. Kodama, Palaeomagnetism and magnetic anisotropy of Carboniferous red beds from the Maritime Provinces of Canada: evidence for shallow palaeomagnetic inclinations and implications for North American apparent polar wander, Geophysical Journal International, vol.180, issue.3, pp.1013-1029, 2010.
DOI : 10.1111/j.1365-246X.2009.04457.x

D. Bilardello, J. Jezek, and K. P. Kodama, Propagating and incorporating the error in anisotropy-based inclination corrections, Geophysical Journal International, vol.187, issue.1, pp.75-84, 2011.
DOI : 10.1111/j.1365-246X.2011.05138.x

J. P. Burg and G. M. Chen, Tectonics and structural zonation of southern Tibet, China, Nature, vol.307, issue.5983, pp.311-219, 1984.
DOI : 10.1038/311219a0

J. P. Burg, F. Proust, P. Tapponnier, and G. M. Chen, Deformation phases and tectonic evolution of the Lhasa block (southern Tibet, Eclogae Geol. Helvetiae, pp.643-665, 1983.

A. Chauvin, H. Perroud, and M. L. Bazhenov, Anomalous low palaeomagnetic inclinations from Oligocene-Lower Miocene red beds of the south-west Tien Shan, Central Asia, Geophysical Journal International, vol.126, issue.2, pp.303-313, 1996.
DOI : 10.1111/j.1365-246X.1996.tb05293.x

J. Chen, B. Huang, and L. Sun, New constraints to the onset of the India???Asia collision: Paleomagnetic reconnaissance on the Linzizong Group in the Lhasa Block, China, Tectonophysics, vol.489, issue.1-4, pp.489-189, 2010.
DOI : 10.1016/j.tecto.2010.04.024

W. Chen, Paleomagnetic results from the Early Cretaceous Zenong Group volcanic rocks, Cuoqin, Tibet, and their paleogeographic implications, Gondwana Research, vol.22, issue.2, pp.461-469, 2012.
DOI : 10.1016/j.gr.2011.07.019

Y. Chen, J. P. Cogne, V. Courtillot, P. Tapponnier, and X. Y. Zhu, Cretaceous paleomagnetic results from western Tibet and tectonic implications, Journal of Geophysical Research: Solid Earth, vol.24, issue.B10, pp.17-17, 1993.
DOI : 10.1029/93JB01006

C. Coulon, H. Maluski, C. Bollinger, and S. Wang, Mesozoic and cenozoic volcanic rocks from central and southern Tibet:39Ar-40Ar dating, petrological characteristics and geodynamical significance, Earth and Planetary Science Letters, vol.79, issue.3-4, pp.281-302, 1986.
DOI : 10.1016/0012-821X(86)90186-X

L. De-groot, M. Haldan, and C. Langereis, Inclination error correction in red beds: is it possible?, Fall Meet, 2007.

M. H. Deenen, C. G. Langereis, D. J. Van-hinsbergen, and A. J. Biggin, Geomagnetic secular variation and the statistics of palaeomagnetic directions, Geophysical Journal International, vol.186, issue.2, pp.509-520, 2011.
DOI : 10.1111/j.1365-246X.2011.05050.x

J. F. Dewey, R. M. Shackleton, C. Chengfa, and S. Yiyin, The Tectonic Evolution of the Tibetan Plateau, Proc. R. Soc. Lond, pp.379-413, 1988.
DOI : 10.1098/rsta.1988.0135

L. Ding, P. Kapp, D. Zhong, and W. Deng, Cenozoic Volcanism in Tibet: Evidence for a Transition from Oceanic to Continental Subduction, Journal of Petrology, vol.44, issue.10, pp.1833-1865, 2003.
DOI : 10.1093/petrology/egg061

M. Domeier, R. Van-der-voo, and F. B. Denny, Widespread inclination shallowing in Permian and Triassic paleomagnetic data from Laurentia: Support from new paleomagnetic data from Middle Permian shallow intrusions in southern Illinois (USA) and virtual geomagnetic pole distributions, Tectonophysics, vol.511, issue.1-2, pp.38-52, 2011.
DOI : 10.1016/j.tecto.2011.08.016

D. J. Dunlop, Theory and application of the Day plot (Mrs/Ms versus Hcr/Hc) 1. Theoretical curves and tests using titanomagnetite data, J. geophys. Res, vol.107, pp.10-1029, 2002.

D. J. Dunlop and ¨. O. Odemir, Rock Magnetism: Fundamentals and Frontiers, 1997.
DOI : 10.1017/CBO9780511612794

G. Dupont-nivet, Z. Guo, R. F. Butler, and C. Jia, Discordant paleomagnetic direction in Miocene rocks from the central Tarim Basin: evidence for local deformation and inclination shallowing, Earth and Planetary Science Letters, vol.199, issue.3-4, pp.473-482, 2002.
DOI : 10.1016/S0012-821X(02)00566-6

G. Dupont-nivet, C. Hoorn, and M. Konert, Tibetan uplift prior to the Eocene-Oligocene climate transition: Evidence from pollen analysis of the Xining Basin, Geology, vol.36, issue.12, pp.987-990, 2008.
DOI : 10.1130/G25063A.1

G. Dupont-nivet, D. J. Van-hinsbergen, and T. H. Torsvik, Persistently low Asian paleolatitudes: Implications for the India-Asia collision history, Tectonics, vol.114, issue.B2, pp.10-1029, 2010.
DOI : 10.1029/2008TC002437

G. Dupont-nivet, P. C. Lippert, D. J. Van-hinsbergen, M. J. Meijers, and P. Kapp, Palaeolatitude and age of the Indo-Asia collision: palaeomagnetic constraints, Geophysical Journal International, vol.182, issue.3, pp.1189-1198, 2010.
DOI : 10.1111/j.1365-246X.2010.04697.x

R. A. Fisher, Dispersion on a Sphere, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, vol.217, issue.1130, pp.295-305, 1953.
DOI : 10.1098/rspa.1953.0064

S. Gilder, Y. Chen, and S. Sen, Oligo-Miocene magnetostratigraphy and rock magnetism of the Xishuigou section, Subei (Gansu Province, western China) and implications for shallow inclinations in central Asia, Journal of Geophysical Research: Solid Earth, vol.117, issue.B12, pp.505-535, 2001.
DOI : 10.1029/2001JB000325

URL : https://hal.archives-ouvertes.fr/hal-00089760

S. Gilder, Y. Chen, J. Cogne, X. Tan, V. Courtillot et al., Paleomagnetism of Upper Jurassic to Lower Cretaceous volcanic and sedimentary rocks from the western Tarim Basin and implications for inclination shallowing and absolute dating of the M-0 (ISEA?) chron, Earth and Planetary Science Letters, vol.206, issue.3-4, pp.587-600, 2003.
DOI : 10.1016/S0012-821X(02)01074-9

F. M. Gradstein, J. G. Ogg, M. Schmitz, and G. Ogg, The Geologic Time Scale, 2012.

D. H. Griffiths, R. F. King, and A. I. Rees, THE RELEVANCE OF MAGNETIC MEASUREMENTS ON SOME FINE GRAINED SILTS TO THE STUDY OF THEIR DEPOSITIONAL PROCESS, Sedimentology, vol.174, issue.2, pp.134-144, 1962.
DOI : 10.1111/j.1365-3091.1962.tb00030.x

N. Hamilton and R. F. King, Comparison of the Bedding Errors of Artificially and Naturally Deposited Sediments with Those Predicted from a Simple Model, Geophysical Journal International, vol.8, issue.4, pp.370-374, 1964.
DOI : 10.1111/j.1365-246X.1964.tb03858.x

J. P. Hodych and S. Bijaksana, Plastically deforming clay-rich sediment to help measure the average remanence anisotropy of its individual magnetic particles, and correct for paleomagnetic inclination shallowing, Physics and Chemistry of the Earth, Parts A/B/C, vol.27, issue.25-31, pp.1273-1279, 2002.
DOI : 10.1016/S1474-7065(02)00112-2

J. P. Hodych, S. Bijaksana, and R. Pätzold, Using magnetic anisotropy to correct for paleomagnetic inclination shallowing in some magnetitebearing deep-sea turbidites and limestones, Tectonophysics, pp.191-205, 1999.

B. A. Housen, C. Richter, and B. A. Van-der-pluijm, Composite magnetic anisotropy fabrics: experiments, numerical models and implications for the quantification of rock fabrics, Tectonophysics, vol.220, issue.1-4, pp.1-12, 1993.
DOI : 10.1016/0040-1951(93)90219-A

F. Hrouda and J. Jezek, Magnetic anisotropy indications of deformations associated with diagenesis, Geological Society, London, Special Publications, vol.151, issue.1, pp.127-137, 1999.
DOI : 10.1144/GSL.SP.1999.151.01.13

F. S. Hrouda, Models of magnetic anisotropy variations in sedimentary thrust sheets, Tectonophysics, vol.185, issue.3-4, pp.203-210, 1991.
DOI : 10.1016/0040-1951(91)90444-W

M. Jackson, W. Gruber, J. Marvin, and S. K. Banerjee, Partial anhysteretic remanence and its anisotropy: Applications and grainsize-dependence, Geophysical Research Letters, vol.46, issue.5, pp.440-443, 1988.
DOI : 10.1029/GL015i005p00440

M. J. Jackson, J. A. Banerjee, R. L. Marvin, and W. Grueber, Detrital Remanence, Inclination Errors, and Anhysteretic Remanence Anisotropy: Quantitative Model and Experimental Results, Geophysical Journal International, vol.104, issue.1, pp.95-103, 1991.
DOI : 10.1111/j.1365-246X.1991.tb02496.x

URL : http://gji.oxfordjournals.org/cgi/content/short/104/1/95

V. Jelinek, Characterization of the magnetic fabric of rocks, Tectonophysics, pp.63-67, 1981.

J. Jezek and S. Gilder, Competition of magnetic and hydrodynamic forces on ellipsoidal particles under shear: potential influence on the recording process of the Earth's magnetic field in sediments, EGS General Assembly Conference, 2002.

J. Jezek and S. A. Gilder, Competition of magnetic and hydrodynamic forces on ellipsoidal particles under shear: Influence of the Earth's magnetic field on particle alignment in viscous media, Journal of Geophysical Research: Solid Earth, vol.88, issue.B2, pp.12-2310, 2006.
DOI : 10.1029/2001JB001608

P. Kapp, P. G. Decelles, G. E. Gehrels, M. Heizler, and L. Ding, Geological records of the Lhasa-Qiangtang and Indo-Asian collisions in the Nima area of central Tibet, Geological Society of America Bulletin, vol.119, issue.7-8, pp.917-933, 2007.
DOI : 10.1130/B26033.1

D. V. Kent and E. Irving, Influence of inclination error in sedimentary rocks on the Triassic and Jurassic apparent pole wander path for North America and implications for Cordilleran tectonics, Journal of Geophysical Research, vol.17, issue.4, pp.10-1029, 1978.
DOI : 10.1029/2009JB007205

D. V. Kent and M. A. Smethurst, Shallow bias of paleomagnetic inclinations in the Paleozoic and Precambrian, Earth and Planetary Science Letters, vol.160, issue.3-4, pp.391-402, 1998.
DOI : 10.1016/S0012-821X(98)00099-5

B. Kim and K. P. Kodama, A compaction correction for the paleomagnetism of the Nanaimo Group sedimentary rocks: Implications for the Baja British Columbia hypothesis, Journal of Geophysical Research: Solid Earth, vol.35, issue.6, pp.210210-1029, 1978.
DOI : 10.1029/2002JB001982

J. W. King, S. K. Banerjee, J. Marvin, and O. Ozdemir, A comparison of different magnetic methods for determining the relative grain size of magnetite in natural materials: Some results from lake sediments, Earth and Planetary Science Letters, vol.59, issue.2, pp.404-419, 1982.
DOI : 10.1016/0012-821X(82)90142-X

J. W. King, S. K. Banerjee, and J. Marvin, A new rock-magnetic approach to selecting sediments for geomagnetic paleointensity studies: Application to paleointensity for the last 4000 years, Journal of Geophysical Research: Solid Earth, vol.88, issue.333, pp.5911-5921, 1983.
DOI : 10.1029/JB088iB07p05911

R. F. King, THE REMANENT MAGNETISM OF ARTIFICIALLY DEPOSITED SEDIMENTS, Geophysical Journal International, vol.7, pp.115-134, 1955.
DOI : 10.1111/j.1365-246X.1955.tb06558.x

R. F. King and A. I. Rees, Detrital magnetism in sediments: An examination of some theoretical models, Journal of Geophysical Research, vol.8, issue.2, pp.561-571, 1966.
DOI : 10.1029/JZ071i002p00561

J. L. Kirschvink, The least-squares line and plane and the analysis of palaeomagnetic data, Geophysical Journal International, vol.62, issue.3, pp.699-718, 1980.
DOI : 10.1111/j.1365-246X.1980.tb02601.x

K. Kodama and J. Davi, A compaction correction for the paleomagnetism of the Cretaceous Pigeon Point Formation of California, Tectonics, vol.15, issue.45, pp.1153-1164, 1995.
DOI : 10.1029/95TC01648

K. P. Kodama, A successful rock magnetic technique for correctng paleomagnetic inclination shallowing: Case study of the Nacimiento Formation, New Mexico, Journal of Geophysical Research: Solid Earth, vol.280, issue.B3, pp.5193-5205, 1997.
DOI : 10.1029/96JB03833

K. P. Kodama, Simplification of the anisotropy-based inclination correction technique for magnetite- and haematite-bearing rocks: a case study for the Carboniferous Glenshaw and Mauch Chunk Formations, North America, Geophysical Journal International, vol.176, issue.2, pp.467-477, 2009.
DOI : 10.1111/j.1365-246X.2008.04013.x

W. Krijgsman and L. Tauxe, Shallow bias in Mediterranean paleomagnetic directions caused by inclination error, Earth and Planetary Science Letters, vol.222, issue.2, pp.685-695, 2004.
DOI : 10.1016/j.epsl.2004.03.007

P. P. Kruiver and H. F. Passier, Coercivity analysis of magnetic phases in sapropel S1 related to variations in redox conditions, including an investigation of the S-ratio, Geochem. Geophys. Geosyst, vol.2, pp.10-1029, 1063.

P. P. Kruiver, M. J. Dekkers, and D. Heslop, Quantification of magnetic coercivity components by the analysis of acquisition curves of isothermal remanent magnetisation, Earth and Planetary Science Letters, vol.189, issue.3-4, pp.269-276, 2001.
DOI : 10.1016/S0012-821X(01)00367-3

R. Løvlie and T. Torsvik, Magnetic remanence and fabric properties of laboratory-deposited hematite-bearing red sandstone, Geophysical Research Letters, vol.12, issue.3, pp.221-224, 1984.
DOI : 10.1029/GL011i003p00221

H. Y. Lee, S. Chung, Y. Wang, D. Zhu, J. Yang et al., Age, petrogenesis and geological significance of the Linzizong volcanic successions in the Linzhou basin, southern Tibet: evidence from zircon U-Pb dates and Hf isotopes, Acta Petrol. Sin, vol.23, pp.493-500, 2007.

A. L. Leier, P. G. Decelles, P. Kapp, and L. Ding, The Takena Formation of the Lhasa terrane, southern Tibet: The record of a Late Cretaceous retroarc foreland basin, Geological Society of America Bulletin, vol.119, issue.1-2, pp.31-48, 2007.
DOI : 10.1130/B25974.1

Y. X. Li, K. P. Kodama, and D. P. Smith, New paleomagnetic, rock magnetic, and petrographic results from the Valle Group: exploring the causes of anomalously shallow paleomagnetic inclinations, J. geophys. Res, pp.10-1029, 2004.

U. Liebke, E. Appel, L. Ding, U. Neumann, B. Antolin et al., Position of the Lhasa terrane prior to India-Asia collision derived from palaeomagnetic inclinations of 53 Ma old dykes of the Linzhou Basin: constraints on the age of collision and post-collisional shortening within the Tibetan Plateau, Geophysical Journal International, vol.182, issue.3, pp.1199-1215, 2010.
DOI : 10.1111/j.1365-246X.2010.04698.x

J. Lin and D. R. Watts, Palaeomagnetic Constraints on Himalayan--Tibetan Tectonic Evolution, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, vol.326, issue.1589, pp.177-188, 1988.
DOI : 10.1098/rsta.1988.0084

P. C. Lippert, X. X. Zhao, R. S. Coe, and C. H. Lo, Palaeomagnetism and Ar-40/Ar-39 geochronology of upper Palaeogene volcanic rocks from Central Tibet: implications for the Central Asia inclination anomaly, the palaeolatitude of Tibet and post-50 Ma shortening within Asia, Geophys, J. Int, vol.184, pp.131-161, 2011.

P. C. Lippert, D. J. Van-hinsbergen, and G. Dupont-nivet, in press. The Early Cretaceous to Present latitude of the central Lhasa-plano (Tibet): a paleomagnetic synthesis with implications for Cenozoic tectonics, paleogeography and climate of Asia, in Towards an Improved Understanding of Uplift Mechanisms and the Elevation History of the Tibetan Plateau

C. Mccabe, M. Jackson, and B. B. Ellwood, Magnetic anisotropy in the Trenton Limestone: Results of a new technique, anisotropy of anhysteretic susceptibility, Geophysical Research Letters, vol.51, issue.6, pp.333-336, 1985.
DOI : 10.1029/GL012i006p00333

X. Mo, Z. Hou, Y. Niu, G. Dong, X. Qu et al., Mantle contributions to crustal thickening during continental collision: Evidence from Cenozoic igneous rocks in southern Tibet, Lithos, vol.96, issue.1-2, pp.225-242, 2007.
DOI : 10.1016/j.lithos.2006.10.005

X. Mo, Y. Niu, G. Dong, Z. Zhao, Z. Hou et al., Contribution of syncollisional felsic magmatism to continental crust growth: A case study of the Paleogene Linzizong volcanic Succession in southern Tibet, Chemical Geology, vol.250, issue.1-4, pp.49-67, 2008.
DOI : 10.1016/j.chemgeo.2008.02.003

T. A. Mullender, A. J. Velzen, and M. J. Dekkers, Continuous drift correction and separate identification of ferrimagnetic and paramagnetic contributions in thermomagnetic runs, Geophysical Journal International, vol.114, issue.3, pp.663-672, 1993.
DOI : 10.1111/j.1365-246X.1993.tb06995.x

T. A. Mullender, T. Frederichs, C. Hilgenfeldt, K. Fabian, and M. J. Dekkers, Fully automated demagnetization and measurement of NRM, ARM and IRM on a '2G' SQUID magnetometer, IAGA Conference, pp.2005-00898, 2005.

W. Owens, Mathematical model studies on factors affecting the magnetic anisotropy of deformed rocks, Tectonophysics, vol.24, issue.1-2, pp.115-131, 1974.
DOI : 10.1016/0040-1951(74)90133-4

J. M. Pares, B. A. Van-der-pluijm, and J. Dinares-turell, Evolution of magnetic fabrics during incipient deformation of mudrocks (Pyrenees, Tectonophysics, pp.1-14, 1999.

A. Patzelt, H. Li, J. Wang, and E. Appel, Palaeomagnetism of Cretaceous to Tertiary sediments from southern Tibet: evidence for the extent of the northern margin of India prior to the collision with Eurasia, Tectonophysics, vol.259, issue.4, pp.259-284, 1996.
DOI : 10.1016/0040-1951(95)00181-6

C. R. Pike, A. P. Roberts, and K. L. Verosub, Characterizing interactions in fine magnetic particle systems using first order reversal curves, Journal of Applied Physics, vol.85, issue.9, pp.6660-6667, 1999.
DOI : 10.1063/1.370176

J. Pozzi, M. Westphal, X. Zhou, Y. Sheng-xing, L. Yao-chen et al., Position of the Lhasa block, South Tibet, during the late Cretaceous, Nature, vol.294, issue.5864, pp.319-321, 1982.
DOI : 10.1038/297319a0

A. I. Rees, The effect of water currents on the magnetic remanence and anisotropy of susceptibility of some sediments, G e o p h y s, J .R .a s t r . Soc, vol.5, pp.235-251, 1961.

A. I. Rees, THE USE OF ANISOTROPY OF MAGNETIC SUSCEPTIBILITY IN THE ESTIMATION OF SEDIMENTARY FABRIC1, Sedimentology, vol.65, issue.4, pp.257-271, 1965.
DOI : 10.1111/j.1365-3091.1965.tb01550.x

A. I. Rees and W. A. Woodall, The magnetic fabric of some laboratory-deposited sediments, Earth and Planetary Science Letters, vol.25, issue.2, pp.121-130, 1975.
DOI : 10.1016/0012-821X(75)90188-0

A. P. Roberts, C. R. Pike, and K. L. Verosub, First-order reversal curve diagrams: A new tool for characterizing the magnetic properties of natural samples, Journal of Geophysical Research: Solid Earth, vol.46, issue.36, pp.461-428, 2000.
DOI : 10.1029/2000JB900326

A. M. Sengor, The Cimmeride Orogenic System and the Tectonics of Eurasia, Geol. Soc. Am. Spec. Paper, vol.195, pp.1-74, 1984.
DOI : 10.1130/SPE195-p1

J. Si and R. Van-der-voo, Too-low magnetic inclinations in central Asia: an indication of a long-term Tertiary non-dipole field?, Terra Nova, vol.99, issue.6, pp.471-478, 2001.
DOI : 10.1016/0012-821X(93)90114-O

W. W. Sun and K. P. Kodama, Magnetic anisotropy, scanning electron microscopy, and X ray pole figure goniometry study of inclination shallowing in a compacting clay-rich sediment, Journal of Geophysical Research, vol.39, issue.B13, pp.599-618, 1992.
DOI : 10.1029/92JB01589

Z. Sun, W. Jiang, H. Li, J. Pei, and Z. Zhu, New paleomagnetic results of Paleocene volcanic rocks from the Lhasa block: Tectonic implications for the collision of India and Asia, Tectonophysics, vol.490, issue.3-4, pp.490-257, 2010.
DOI : 10.1016/j.tecto.2010.05.011

Z. Sun, J. Pei, H. Li, W. Xu, W. Jiang et al., Palaeomagnetism of late Cretaceous sediments from southern Tibet: Evidence for the consistent palaeolatitudes of the southern margin of Eurasia prior to the collision with India, Gondwana Research, vol.21, issue.1, pp.53-63, 2012.
DOI : 10.1016/j.gr.2011.08.003

X. Tan, Correcting the bias toward shallow paleomagnetic inclinations in hematite-bearing sedimentary rocks: theory, experiments, and applications, 2001.

X. Tan and K. P. Kodama, Compaction-corrected inclinations from southern California Cretaceous marine sedimentary rocks indicate no paleolatitudinal offset for the Peninsular Ranges terrane, Journal of Geophysical Research: Solid Earth, vol.23, issue.2, pp.27-169, 1998.
DOI : 10.1029/98JB02343

X. Tan and K. P. Kodama, Magnetic anisotropy and paleomagnetic inclination shallowing in red beds: Evidence from the Mississippian Mauch Chunk Formation, Pennsylvania, Journal of Geophysical Research: Solid Earth, vol.8, issue.17, pp.10-1029, 2002.
DOI : 10.1029/2001JB001608

X. Tan, K. P. Kodama, H. Chen, D. Fang, D. Sun et al., Paleomagnetism and magnetic anisotropy of Cretaceous red beds from the Tarim basin, northwest China: Evidence for a rock magnetic cause of anomalously shallow paleomagnetic inclinations from central Asia, Journal of Geophysical Research: Solid Earth, vol.181, issue.46, p.210710, 1029.
DOI : 10.1029/2001JB001608

X. Tan, S. Gilder, K. P. Kodama, W. Jiang, Y. Han et al., New paleomagnetic results from the Lhasa block: Revised estimation of latitudinal shortening across Tibet and implications for dating the India???Asia collision, Earth and Planetary Science Letters, vol.293, issue.3-4, pp.396-404, 2010.
DOI : 10.1016/j.epsl.2010.03.013

P. Tapponnier, M. Mattauer, F. Proust, and C. Cassaigneau, Mesozoic ophiolites, sutures, and arge-scale tectonic movements in Afghanistan, Earth and Planetary Science Letters, vol.52, issue.2, pp.355-371, 1981.
DOI : 10.1016/0012-821X(81)90189-8

D. Tarling and F. Hrouda, Magnetic Anisotropy of Rocks, 1993.

L. Tauxe and D. V. Kent, A Simplified Statistical Model for the Geomagnetic Field and the Detection of Shallow Bias in Paleomagnetic Inclinations: was the Ancient Magnetic Field Dipolar?, pp.101-115, 2004.
DOI : 10.1029/145GM08

L. Tauxe, Inclination flattening and the geocentric axial dipole hypothesis, Earth and Planetary Science Letters, vol.233, issue.3-4, pp.247-261, 2005.
DOI : 10.1016/j.epsl.2005.01.027

L. Tauxe, K. P. Kodama, and D. V. Kent, Testing corrections for paleomagnetic inclination error in sedimentary rocks: A comparative approach, Physics of the Earth and Planetary Interiors, vol.169, issue.1-4, pp.152-165, 2008.
DOI : 10.1016/j.pepi.2008.05.006

T. H. Torsvik and R. Van-der-voo, Refining Gondwana and Pangea palaeogeography: estimates of Phanerozoic non-dipole (octupole) fields, Geophysical Journal International, vol.151, issue.3, pp.771-794, 2002.
DOI : 10.1046/j.1365-246X.2002.01799.x

D. Vandamme, A new method to determine paleosecular variation, Physics of the Earth and Planetary Interiors, vol.85, issue.1-2, pp.131-142, 1994.
DOI : 10.1016/0031-9201(94)90012-4

R. Van-der-voo and T. H. Torsvik, Evidence for late Paleozoic and Mesozoic non-dipole fields provides an explanation for the Pangea reconstruction problems, Earth and Planetary Science Letters, vol.187, issue.1-2, pp.71-81, 2001.
DOI : 10.1016/S0012-821X(01)00285-0

D. J. Van-hinsbergen, P. C. Lippert, G. Dupont-nivet, N. Mcquarrie, P. V. Doubrovine et al., Greater India Basin hypothesis and a two-stage Cenozoic collision between India and Asia, Proc. Natl. Acad. Sci, pp.7659-7664, 2012.
DOI : 10.1073/pnas.1117262109

URL : https://hal.archives-ouvertes.fr/insu-00701362

J. Vaughn, K. P. Kodama, and D. P. Smith, Correction of inclination shallowing and its tectonic implications: The Cretaceous Perforada Formation, Baja California, Earth and Planetary Science Letters, vol.232, issue.1-2, pp.71-82, 2005.
DOI : 10.1016/j.epsl.2004.11.026

M. Westphal, Did a large departure from the geocentric axial dipole hypothesis occur during the Eocene? Evidence from the magnetic polar wander path of Eurasia, Earth and Planetary Science Letters, vol.117, issue.1-2, pp.15-28, 1993.
DOI : 10.1016/0012-821X(93)90114-O

M. Westphal and J. Pozzi, Paleomagnetic and plate tectonic constraints on the movement of Tibet, Tectonophysics, vol.98, issue.1-2, pp.1-10, 1983.
DOI : 10.1016/0040-1951(83)90207-X

R. H. Xu, U. Scharer, and C. J. Allegre, Magmatism and Metamorphism in the Lhasa Block (Tibet): A Geochronological Study, The Journal of Geology, vol.93, issue.1, pp.41-57, 1985.
DOI : 10.1086/628918

M. Yan, R. V. Voo, L. Tauxe, X. Fang, and J. M. Parés, Shallow bias in Neogene palaeomagnetic directions from the Guide Basin, NE Tibet, caused by inclination error, Geophysical Journal International, vol.163, issue.3, pp.944-948, 2005.
DOI : 10.1111/j.1365-246X.2005.02802.x

Z. Yi, B. Huang, J. Chen, L. Chen, and H. Wang, Paleomagnetism of early Paleogene marine sediments in southern Tibet, China: Implications to onset of the India???Asia collision and size of Greater India, Earth and Planetary Science Letters, vol.309, pp.153-165, 2011.
DOI : 10.1016/j.epsl.2011.07.001

A. Yin and M. T. Harrison, Geologic Evolution of the Himalayan-Tibetan Orogen, Annual Review of Earth and Planetary Sciences, vol.28, issue.1, pp.211-280, 2000.
DOI : 10.1146/annurev.earth.28.1.211

Z. Yuquans, Thermal evolution of the Gangdese batholith, southern Tibet: a history of episodic unroofing, Tectonics, vol.14, pp.223-236, 1995.

S. Zhou, X. Mo, G. Dong, Z. Zhao, R. Qiu et al., 40Ar-39Ar geochronology of Cenozoic Linzizong volcanic rocks from Linzhou Basin, Tibet, China, and their geological implications, 40 Ar-39 Ar geochronology of Cenozoic Linzizong volcanic rocks from Linzhou Basin, Tibet, China, and their geological implications, pp.1970-1979, 2004.
DOI : 10.1007/BF03184291