R. W. Allmendinger, N. Cardozo, and D. M. Fisher, Structural Geology Algorithms, p.660, 2012.
DOI : 10.1017/CBO9780511920202

J. Angelier, Fault slip analysis and paleostress reconstruction, p.662, 1994.

J. Angelier and P. Mechler, Sur une méthode graphique de recherche des contraintes 664 principales également utilisable en tectonique et en sismologie: la méthode des dièdres 665 droits, Bull. Soc. Géol. France, vol.19, pp.1309-1318, 1977.
DOI : 10.2113/gssgfbull.s7-xix.6.1309

A. L. Auzende, I. Daniel, B. Reynard, C. Lemaire, and F. Guyot, High-pressure 667 behaviour of serpentine minerals: a Raman spectroscopic study, Phys. Chem. Miner, vol.668, pp.31-269, 2004.

J. Avias, Overthrust structure of the main ultrabasic new caledonian massives, Tectonophysics, vol.4, issue.4-6, p.670, 1967.
DOI : 10.1016/0040-1951(67)90017-0

D. Berthé, P. Choukroune, and D. Gapais, Orientations préférentielles du quartz et 675 orthogneissification progressive en régime cisaillant: l'exemple du cisaillement sud- 676 armoricain, Bull. Minéral, vol.102, pp.265-272, 1979.

F. Boudier, G. Ceuleneer, and A. Nicolas, Shear zones, thrusts and related magmatism in 678, 1988.

C. R. Butt and D. Cluzel, Nickel Laterite Ore Deposits: Weathered Serpentinites, Elements, vol.9, issue.2, pp.123-128, 2013.
DOI : 10.2113/gselements.9.2.123

D. Chardon and V. Chevillotte, Morphotectonic evolution of the New Caledonia ridge 689 (Pacific Southwest) from post-obduction tectonosedimentary record, Tectonophysics, vol.690, pp.420-473, 2006.

V. Chevillotte, D. Chardon, A. Beauvais, P. Maurizot, and F. Colin, Long-term tropical morphogenesis of New Caledonia (Southwest Pacific): Importance of positive epeirogeny and climate change, Geomorphology, vol.81, issue.3-4, pp.361-375, 2006.
DOI : 10.1016/j.geomorph.2006.04.020

D. Cluzel, J. C. Aitchison, and C. Picard, Tectonic accretion and underplating of mafic terranes in the Late Eocene intraoceanic fore-arc of New Caledonia (Southwest Pacific): geodynamic implications, Tectonophysics, vol.340, issue.1-2, pp.23-59, 2001.
DOI : 10.1016/S0040-1951(01)00148-2

URL : https://hal.archives-ouvertes.fr/hal-00089721

D. Cluzel, P. Maurizot, J. Collot, and B. Sevin, An outline of the geology of New 698, 2012.

D. Cluzel and B. Vigier, Syntectonic mobility of supergene nickel ores of New Caledonia 701 (Southwest Pacific) Evidence from faulted regolith and garnierite veins, Resource Geol, vol.702, pp.58-161, 2008.

R. Coleman, Plate tectonic emplacement of upper mantle peridotites along continental edges, Journal of Geophysical Research, vol.1, issue.1, pp.1212-1222, 1971.
DOI : 10.1029/JB076i005p01212

A. J. Coulton, G. D. Harper, and D. S. O-'hanley, Oceanic versus emplacement age 709 serpentinization in the Josephine ophiolite: implications for the, pp.973-986, 1995.

P. Maurizot, Cartographie d'aide à l'aménagement dans la zone Voh-Koné- 759, 2007.

. Pouembout-poya, Phase 1: Mise à jour de la carte géologique sur les communes de Koné 760

. Nouvelle-calédonie, Bureau de Recherches Géologiques et Minières, p.773

O. Orloff, Etude géologique et géomorphologique des massifs d'ultrabasites compris 774, 1968.

. Houailou and . Canala, Nouvelle-Calédonie), p.775

J. P. Paris, Géologie de la Nouvelle-Calédonie, un essai de synthèse, p.777, 1981.

A. Prinzhofer, A. Nicolas, D. Cassard, J. Moutte, M. Leblanc et al., Structures in the new caledonia peridotites-gabbros: Implications for oceanic mantle and crust, Tectonophysics, vol.69, issue.1-2, pp.85-112, 1980.
DOI : 10.1016/0040-1951(80)90128-6

S. Guillot, S. Lesimple, and C. Couteau, Syn-tectonic, meteoric water-derived 784 carbonation of the New Caledonia peridotite nappe, Geology, vol.41, pp.1063-1066, 2013.

S. Rouméjon and M. Cannat, Serpentinization of mantle-derived peridotites at mid-ocean 786 ridges: mesh texture development in the context of tectonic exhumation. Geochem, p.787, 2014.

K. Schemmann, J. R. Unruh, and E. M. Moores, Kinematics of Franciscan Complex 789 exhumation: new insights from the geology of Mount Diablo, California, Geol. Soc. Am, p.790, 2007.

S. Schwartz, S. Guillot, B. Reynard, R. Lafay, B. Debret et al., Pressure???temperature estimates of the lizardite/antigorite transition in high pressure serpentinites, Lithos, vol.178, issue.794, pp.197-210
DOI : 10.1016/j.lithos.2012.11.023

URL : https://hal.archives-ouvertes.fr/insu-00854214

S. J. Titus, H. Fossen, R. B. Pedersen, J. L. Vigneresse, and B. Tikoff, Pull-apart formation 802 and strike-slip partitioning in an obliquely divergent setting, p.803, 2002.

S. J. Titus, S. M. Maes, B. Benford, E. C. Ferré, and B. Tikoff, Fabric development in the 805 mantle section of a paleo-transform fault and its effect on ophiolite obduction, 2011.

J. J. Trescases, L'évolution géochimique supergène des roches ultrabasiques en zone 808 tropicale, formation des gisements nickélifères de Nouvelle-Calédonie. Mémoires de 809 l'Office de la Recherche Scientifique et Technique Outre-Mer, pp.259-810, 1975.

R. J. Twiss and J. R. Unruh, Analysis of fault slip inversions: Do they constrain stress or strain rate?, Journal of Geophysical Research: Solid Earth, vol.97, issue.2, pp.12205-12222, 1998.
DOI : 10.1029/98JB00612

C. Couteau, Dissolution?precipitation processes governing the carbonation and 819 silicification of the serpentinite sole of the New Caledonia ophiolite, Contrib. Mineral, p.820, 2014.

M. Ulrich, C. Picard, S. Guillot, C. Chauvel, D. Cluzel et al., Multiple melting 822 stages and refertilization as indicators for ridge to subduction formation: the New 823, 2010.