B. Jahn, A. Y. Glikson, J. Peacat, and A. H. Hickman, REE geochemistry and isotopic data of Archean silicic volcanics and granitoids from the Pilbara block, Western Australia: implications for early crustal evolution, Geochim. Cosmochim. Acta, vol.45, pp.1633-1652, 1981.

H. Martin, Effect of steeper Archaean geothermal gradient on geochemistry of subduction-zone magmas, Geology, vol.14, pp.753-756, 1986.

H. Martin, The Archaean grey gneisses and the genesis of continental crust, pp.205-259, 1994.

C. J. Hawkesworth, The generation and evolution of the continental crust, J. Geol. Soc. Lond, vol.167, pp.229-248, 2010.

B. Dhuime, C. J. Hawkesworth, P. A. Cawood, and C. D. Storey, A change in the geodynamics of continental growth 3 billion years ago, Science, vol.335, pp.1334-1336, 2012.

J. E. Hoffmann, C. Zhang, J. F. Moyen, and T. J. Nagel, The formation of tonalites-trondjhemite-granodiorites in early continental crust. In Earth's Oldest Rocks 2nd edn, pp.133-168, 2019.

R. H. Smithies, D. C. Champion, and M. J. Van-kranendonk, Formation of Paleoarchean continental crust through infracrustal melting of enriched basalt, Earth Planet. Sci. Lett, vol.281, pp.298-306, 2009.

H. Martin, J. Moyen, M. Guitreau, J. Blichert-toft, and J. Le-pennec, Why Archean TTG cannot be generated by MORB melting in subduction zone, Lithos, pp.1-13, 2014.

J. Moyen, The composite Archean grey gneisses: petrological significance, and evidence for a non-unique tectonic setting for Archean crustal growth, Lithos, vol.124, pp.21-36, 2011.

M. S. Drummond and M. J. Defant, A model for trondhjemite-tonalite-dacite genesis and crustal growth via slab melting: Archaean to modern comparisons, J. Geophys. Res, vol.95, pp.21503-21521, 1990.

J. Moyen and O. Laurent, Archaean tectonic systems: a view from igneous rocks, Lithos, vol.302, issue.303, pp.99-125, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01718663

J. Moyen, High Sr/Y and La/Yb ratios: the meaning of the "adakitic signature, Lithos, vol.112, pp.556-574, 2009.

T. E. Johnson, M. Brown, N. J. Gardiner, C. L. Kirkland, and R. H. Smithies, Earth's first stable continents did not form by subduction, Nature, vol.543, pp.239-242, 2017.

P. A. Cawood and C. J. Hawkesworth, Continental crustal volume, thickness and area, and their geodynamic implications, Gondwana Res. Focus Rev, vol.66, pp.116-125, 2019.

B. R. Hacker, P. B. Kelemen, and M. D. Behn, Continental lower crust, Annu. Rev. Earth Planet. Sci, vol.43, pp.167-205, 2015.

O. Nebel, When crust comes of age: on the chemical evolution of Archaean, felsic continental crust by crustal drip tectonics, Philos. Trans. R. Soc. A, vol.376, p.20180103, 2018.

P. Chowdhury, T. Gerya, and S. Chakraborty, Emergence of silicic continents as the lower crust peels off on a hot plate-tectonic Earth, Nat. Geo, vol.10, pp.698-703, 2017.

P. F. Rey and N. Coltice, Neoarchean lithospheric strengthening and the coupling of Earth's geochemical reservoirs, Geology, vol.36, pp.635-638, 2008.

J. H. Bédard, Stagnant lids and mantle overturns: Implications for Archaean tectonics, magma genesis, crustal growth, mantle evolution, and the start of plate tectonics, Geosci. Front, vol.9, pp.19-49, 2018.

T. E. Johnson, M. Brown, B. J. Kaus, and J. A. Vantongeren, Delamination and recycling of Archaean crust caused by gravitational instabilities, Nat. Geosci, vol.7, pp.47-52, 2014.

D. Champion and K. F. Cassidy, Granites in the Leonora-Laverton transect area, northeastern Yilgarn Craton, 2002.

D. R. Mole, Time-space evolution of an Archean craton: A Hfisotope window into continent formation, Earth Sci. Rev, vol.196, p.102831, 2019.

K. Czarnota, Geodynamics of the eastern Yilgarn Craton, Precamb. Res, vol.183, pp.175-202, 2010.

C. S. Perring and N. J. Mcnaughton, The relationship between Archaean gold mineralization and spatially associated minor intrusions in the Kambalda and Norseman gold camps, Western Australia: lead isotopic evidence. Mineral. Dep, vol.27, pp.10-22, 1992.

S. B. Shirey and G. N. Hanson, Mantle-derived Archaean monzodiorites and trachyandesites, Nature, vol.310, pp.222-224, 1984.

H. Martin, R. H. Smithies, R. Rapp, J. F. Moyen, and D. Champion, An overview of adakite, tonalite-trondhjemite-granodiorite (TTG), and sanukitoid: relationships and some implications for crustal evolution, Lithos, vol.79, pp.1-24, 2005.

R. H. Smithies and D. C. Champion, The Archaean high-Mg diorite suite: links to tonalite-trondhjemite-granodiorite magmatism and implications for early Archaean crustal growth, J. Petrol, vol.41, pp.1653-1671, 2000.

P. A. Morris and W. K. Witt, Geochemistry and tectonic setting of two contrasting Archaean felsic volcanic associations in the Eastern Goldfields, Western Australia. Precamb. Res, vol.83, pp.83-107, 1997.

D. C. Champion and J. W. Sheraton, Geochemistry and Nd isotope systematics of Archaean granites of the Eastern Goldfields, Yilgarn Craton, Australia: implications for crustal growth processes, Precamb. Res, vol.83, pp.109-132, 1997.

C. S. Perring and N. M. Rock, Relationships between acidic (dacitic) and primitive (lamprophyric) magmas in late Archaean composite dykes, Precamb. Res, vol.52, pp.245-273, 1991.

S. Tumiati, P. Fumagalli, C. Tiraboschi, and S. Poli, An experimental study on COH-bearing peridotite up to 3.2 GPa and implications for crust-mantle recycling, J. Petrol, vol.54, pp.453-479, 2013.

D. H. Green, Experimental study of the influence of water on melting and phase assemblages in the Upper mantle, J. Petrol, vol.55, pp.2067-2096, 2014.

G. Moore and I. S. Carmichael, The hydrous phase equilibria (to 3 kbar) of an andesite and basaltic andesite from western Mexico: constraints on water content and conditions of phenocryst growth, Contrib. Mineral. Petrol, vol.130, pp.304-319, 1998.

D. Oliveira, M. A. Dall'agnol, R. Scaillet, and B. , Petrological constraints on crystallization conditions of Mesoarchean sanukitoid rocks, Southeastern Amazonian Craton, Brazil, J. Petrol, vol.51, pp.2121-2148, 2010.
URL : https://hal.archives-ouvertes.fr/insu-00526307

S. Foley, M. Tiepolo, and R. Vannucci, Growth of early continental crust controlled by melting of amphibole in subduction zones, Nature, vol.417, pp.837-840, 2002.

. Ewarta and W. L. Griffin, Application of proton-microprobe data to trace element partitioning in volcanic rocks, Chem. Geol, vol.117, pp.251-284, 1994.

M. Tiepolo, Nb and Ta incorporation and fractionation in titanian pargasite and pargasite; Crystal-chemical constraints and implications for natural systems, Earth Planet. Sci. Lett, vol.176, pp.185-201, 2000.

R. H. Nandedkar, N. Hürlimann, P. Ulmer, and O. Müntener, Amphibole-melt trace element partitioning of fractionating calc-alkaline magmas in the lower crust: an experimental study, Contrib. Mineral. Petrol, vol.171, 2016.

D. Mckenzie and R. K. Onions, Partial melt distribution from inversion of rare earth element concentrations, J. Petrol, vol.32, pp.1021-1091, 1991.

J. Davidson, S. Turner, H. Handley, C. Macpherson, and A. Dosseto, Amphibole 'sponge' in arc crust?, Geology, vol.35, pp.787-790, 2007.

O. Jagoutz, O. Müntener, M. W. Schmidt, and J. Burg, The roles of flux-and decompression melting and their respective fractionation lines for continental crust formation: evidence from the Kohistan arc, Earth Planet. Sci. Lett, vol.303, pp.25-36, 2011.

K. F. Cassidy, Characterisation and metallogenic significance of Archean granitoids of the Yilgarn craton, Report, vol.222, p.514, 2002.

C. M. Lesher and N. T. Arndt, Nd isotope geochemistry, petrogenesis and volcanic evolution of contaminated komatiites at Kambalda, Western Australia, Lithos, vol.34, pp.127-157, 1995.

J. Tarney and C. E. Jones, Trace element geochemistry of orogenic igneous rocks and crustal growth models, J. Geol. Soc. Lond. Spec. Pub, vol.151, pp.855-868, 1994.

T. C. Liew and M. T. Mcculloch, Genesis of granitoid batholiths of Peninsular Malaysia and implications for models of crustal evolution: Evidence from a Nd-Sr isotopic and U-Pb, zircon study, Geochim. Cosmochim. Acta, vol.49, pp.587-600, 1985.

C. O'neill, S. Turner, and T. Rushmer, The inception of plate tectonics: a record of failure, Philos. Trans. R. Soc. A, vol.376, 2018.

. Smithies, Two distinct origins for Archean greenstone belts, Earth Planet. Sci. Lett, vol.487, pp.106-116, 2018.

H. Liu, W. Sun, R. Zartman, and M. Tang, Continuous plate subduction marked by the rise of alkali magmatism 2.1 billion years ago, Nat. Commun, vol.10, p.3408, 2019.

J. Moyen and J. Van-hunen, Short-term episodicity of Archaean plate tectonics, Geology, vol.40, pp.451-454, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00799058

J. Moyen and H. Martin, Forty years of TTG research, Lithos, vol.148, pp.312-336, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00720513

B. Collins, H. Huang, and X. Jiang, Water-fluxed crustal melting produces Cordilleran batholiths, Geology, vol.44, pp.143-146, 2016.

D. C. Champion and R. H. Smithies, Archean granites, Magmas to Mineralisation: The Ishihara Symposium, pp.13-17, 2003.

D. C. Champion and R. H. Smithies, Geochemistry of paleoarchean granites of the East Pilbara Terrane, Pilbara Craton, Western Australia: implications for early archean crustal growth, Earth's Oldest Rocks: Developments in Precambrian Geology, p.15

M. T. Naney and S. F. Swanson, The effect of Fe and Mg on crysllization in granitic systems, Am. Mineral, vol.65, pp.639-653, 1980.

M. T. Naney, Phase equilibria of rock-forming ferromagnesian silicates in granitic systems, Am. J. Sci, vol.283, pp.993-1033, 1983.

J. H. Bédard, A catalytic delamination-driven model for coupled genesis of Archaean crust and sub-continental lithospheric mantle, Geochim. Cosmochim. Acta, vol.70, pp.1188-1214, 2006.

S. Sun and W. F. Mcdonough, Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes, Magmatism in the Ocean Basins, pp.313-345, 1989.

R. A. Terentiev and M. Santosh, High magnesian granitoids in the Precambrian continental crust: Implication for the continuum between ferro-potassic and magnesio-potassic rock suites, Lithos, vol.314, pp.669-682, 2018.

A. De-joux, T. Thordarson, J. G. Fitton, and A. R. Hastie, Geochemistry of an enriched Neoarchaean volcanic arc succession, Lithos, vol.205, pp.148-167, 2014.

D. C. Champion, Neodymium depleted mantle model age map of Australia: explanatory notes and user guide, Geoscience Australia, 2013.