Building up the first continents: Mesoarchean to Paleoproterozoic crustal evolution in West Troms, Norway, inferred from granitoid petrology, geochemistry and zircon U-Pb/Lu-Hf isotopes
Laurent, Oscar ; Université de Liège > Département de géologie > Pétrologie, géochimie endogènes et pétrophysique
Vander Auwera, Jacqueline ; Université de Liège - ULiège > Département de géologie > Pétrologie, géochimie endogènes et pétrophysique
Bingen, Bernard; NGU (Geological Survey of Norway)
Bolle, Olivier ; Université de Liège - ULiège > Département de géologie > Pétrologie, géochimie endogènes et pétrophysique
Gerdes, Axel; J.W. Goethe Universität > Institut für Geowissenschaften
Language :
English
Title :
Building up the first continents: Mesoarchean to Paleoproterozoic crustal evolution in West Troms, Norway, inferred from granitoid petrology, geochemistry and zircon U-Pb/Lu-Hf isotopes
Åhäll, K.I., Larson, S.Å., Growth-related 1.85–1.55 Ga magmatism in the baltic shield: a review addressing the tectonic characteristics of Svecofennian, TIB 1-related, and Gothian events. GFF 122 (2000), 193–206.
Ahl, M., Bergman, S., Bergström, U., Eliasson, T., Ripa, M., Weihed, P., Geochemical classification of plutonic rocks in central and northern Sweden: rapporteroch meddelanden 106. Sver. Geol. Unders., 2001, 82.
Ahl, M., Sundblad, K., Schöberg, H., Geology, geochemistry, age and geotectonic evolution of the dala granitoids, central Sweden. Precambr. Res. 95 (1999), 147–166.
Almeev, R.R., Bolte, T., Nash, B.P., Holtz, F., Erdmann, M., Cathey, H.E., High-temperature, low-H2O Silicic Magmas of the Yellowstone Hotspot: an Experimental Study of Rhyolite from the Bruneau-Jarbidge Eruptive Center, Central Snake River Plain, USA. J. Petrol. 53:9 (2013), 1837–1866.
Almeida, J.A.C., Dall'Agnol, R., Leite, A.A.S., Geochemistry and zircon geochronology of the archean granite suites of the Rio Maria granite–greenstone terrane, Carajás Province, Brazil. J. S. Am. Earth Sci. 42 (2013), 103–126.
Almeida, J.A.C., Dall'Agnol, R., Oliveira, M.A., Macambira, M.J.B., Pimentel, M.M., Rämö O.T., Guimarães, F.V., Leite, A.A.S., Zircon geochronology, geochemistry and origin of the TTG suites of the Rio Maria granite–greenstone terrane: implications for the growth of the Archean crust of the Carajás Province, Brazil. Precambr. Res. 187 (2011), 201–221.
Alonso-Perez, R., Müntener, O., Ulmer, P., Igneous garnet and amphibole fractionation in the roots of island arcs: experimental constraints on andesitic liquids. Contrib. Miner. Petrol. 157 (2009), 541–558.
Amelin, Y., Lee, D., Halliday, A.N., Pidgeon, R.T., Nature of the Earth's earliest crust from hafnium isotopes in single detrital zircons. Nature 399 (1999), 252–255.
Andersen, T., Andersson, U.B., Graham, S., Åberg, G., Simonsen, S.L., Granitic magmatism by melting of juvenile continental crust: new constraints on the source of Palaeoproterozoic granitoids in Fennoscandia from Hf isotopes in zircon. J. Geol. Soc. London 166 (2009), 233–247.
Andersson, U.B., Petrogenesis of some Proterozoic granitoid suites and associated basic rocks in Sweden (geochemistry and isotope geology). Sveriges Geol. Unders., Rapporteroch Meddelanden 91 (1997), 1–216.
Andersson, U.B., Eklund, O., Claeson, D.T., Geochemical character of the mafic-hybrid magmatism in the Småland-Värmland belt. Special Paper 37 Högdahl, K., Andersson, U.B., Eklund, O., (eds.) The Transscandinavian Igneous Belt (TIB) in Sweden: A Review of Its Character and Evolution, Geological Survey of Finland, 2004, 47–55.
Andersson, U.B., Rutanen, H., Johansson, Å., Mansfeld, J., Rimša, A., Characterization of the paleoproterozoic mantle beneath the fennoscandian shield: geochemistry and isotope geology (Nd, Sr) of ∼1.8 Ga mafic plutonic rocks from the transscandinavian Igneous Belt in southeast Sweden. Int. Geol. Rev. 49 (2007), 587–625.
Armitage, P.E.B., Bergh, S.G., Structural development of the mjelde-skorelvvatn zone on Kvaløya, Troms: a metasupracrustal shear belt in the Precambrian West Troms basement complex, North Norway. Norw. J. Geol. 85 (2005), 117–132.
Arndt, N.T., The formation and evolution of the continental crust. Geochem. Perspect., 2, 2013, 405.
Beard, J.S., Lofgren, G.E., Dehydrationmelting andwater-saturatedmelting of basaltic and andesitic greenstones and amphibolites at 1, 3 and 6.9 kbar. J. Petrol. 32:2 (1991), 365–401.
Bédard, J., A catalytic delamination-driven model for coupled genesis of Archaean crust and sub-continental lithospheric mantle. Geochim. Cosmochim. Ac. 70 (2006), 1188–1214.
Bédard, J., Harris, L., Thurston, P., The hunting of the snArc. Precambr. Res. 229 (2013), 20–48.
Bédard, J.H., How many arcs can dance on the head of a plume?: a ‘Comment’ on: a critical assessment of Neoarchean ‘plume only’ geodynamics: evidence from the superior province, by Derek Wyman, Precambrian research, 2012. Precambr. Res. 229 (2013), 189–197.
Bédard, J.H., Stagnant lids and mantle overturns: implications for Archaean tectonics, magma genesis, crustal growth, mantle evolution, and the start of plate tectonics. Geosci. Front. 9 (2018), 19–49.
Belousova, E.A., Kostitsyn, Y.A., Griffin, W.L., Begg, G.C., O'Reilly, S.Y., Pearson, N.J., The growth of the continental crust: constraints from zircon Hf-isotope data. Lithos 119 (2010), 457–466.
Bergh, S.G., Corfu, F., Myhre, P.I., Kullerud, K., Armitage, P.E.B., Zwaan, C.B., Ravna, E.J.K., Holdsworth, R.H., Chattopadhya, A., Was the Precambrian basement of western Troms and Lofoten-Vesterålen in northern Norway linked to the Lewisian of Scotland? A comparison of crustal components, tectonic evolu-tion and amalgamation history. Tectonics, In Tech Chapter 11 (2012), 283–330, 10.5772/48257.
Bergh, S.G., Corfu, F., Priyatkina, N., Kullerud, K., Myhre, P.I., Multiple post-Svecofennian 1750–1560 Ma pegmatite dykes in Archaean-Palaeoproterozoic rocks of the West Troms Basement Complex, North Norway: Geological significance and regional implications. Precambr. Res. 266 (2015), 425–439.
Bergh, S.G., Eig, K., Kløvjan, O.S., Henningsen, T., Olesen, O., Hansen, J.A., The Lofoten-Vesterålen Continental Margin: a multiphase Mesozoic-Palaeogene Rifted Shelf as shown by offshore-onshore Brittle Fault-fracture analysis. Norw. J. Geol. 87 (2007), 29–58.
Bergh, S.G., Kullerud, K., Armitage, P.E.B., Zwaan, K.B., Corfu, F., Ravna, E.J.K., Myhre, P.I., Neoarchaean to Svecofennian tectono-magmatic evolution of the West Troms Basement Complex, North Norway. Norwgian J. Geol. 90 (2010), 21–48.
Bergh, S.G., Kullerud, K., Corfu, F., Armitage, P.E.B., Davidsen, B., Johansen, H.W., Pettersen, T., Knudsen, S., Low-grade sedimentary rocks on Vanna, North Norway: a new occurrence of a Palaeoproterozoic (2.4–2.2 Ga) cover successionin northern Fennoscandia. Norw. J. Geol. 87 (2007), 301–318.
Bergh, S.G., Kullerud, K., Myhre, P.I., Corfu, F., Armitage, P.E.B., Zwaan, K.B., Ravna, E.J.K., Archaean elements of the basement outliers west of the Scandinavian Caledonides in Northern Norway: architecture, evolution and possible correlation with Fennoscandia. Dilek, Y., Furnes, H., (eds.) Evolution of Archean Crust and Early Life, Modern Approaches in Solid Earth Sciences, 7, 2014, 103–126.
Bingen, B., Andersson, J., Söderlund, U., Möller, C., The Mesoproterozoic in the Nordic countries. Episodes 31 (2008), 29–34.
Bingen, B., Solli, A., Viola, G., Torgersen, E., Sandstad, J.S., Whitehouse, M.J., Skår, Ø., Ganerød, M., Nasuti, A., Geochronology of the Palaeoproterozoic Kautokeino Greenstone Belt, Finnmark, northern Norway: Tectonic implications in a Fennoscandia context. Norw. J. Geol. 95 (2015), 365–396.
Blatter, D.L., Sisson, T.W., Hankins, W.B., Crystallization of oxidized, moderately hydrous arc basalt at mid- to lower-crustal pressures: implications for andesite genesis. Contrib. Mineral. Petr. 166:3 (2013), 861–886.
Blichert-Toft, J., Puchtel, I.S., Depleted mantle sources through time: evidence from Lu–Hf and Sm–Nd isotope systematics of Archean komatiites. Earth Planet. Sci. Lett. 297:3–4 (2010), 598–606.
Black, R., Liégeois, J.-P., Cratons, mobile belts, alkaline rocks and continental lithospheric mantle: the Pan-African testimony. J. Geol. Soc. London 150 (1993), 89–98.
Block, S., Baratoux, L., Zeh, A., Laurent, O., Bruguier, O., Jessell, M., Ailleres, L., Sagna, R., Parra-Avila, L., Bosch, D., Paleoproterozoic juvenile crust formation and stabilisation in the south-eastern West African Craton (Ghana); new insights from U-Pb-Hf zircon data and geochemistry. Precambr. Res. 287 (2016), 1–30.
Bogaerts, M., Scaillet, B., Vander Auwera, J., Phase equilibria of the Lyngdal granodiorite (Norway): implications for the origin of metaluminous ferroan granitoids. J. Petrol. 47:12 (2006), 2405–2431.
Bouilhol, P., Jagoutz, O., Hanchar, J.M., Dudas, F.O., Dating the India-Eurasia collision through arc magmatic records. Earth Planet. Sci. Lett. 366 (2013), 163–175.
Bouvier, A., Vervoort, J.D., Patchett, P.J., The Lu–Hf and Sm–Nd isotopic compo-sition of CHUR: constraints from unequilibrated chondrites and implications for the bulk composition of terrestrial planets. Earth Planet. Sci. Lett. 273 (2008), 48–57.
Cawood, P.A., Tyler, I.M., Assembling and reactivating the Proterozoic Capricorn Orogen: lithotectonic elements, orogenies, and significance. Precambr. Res. 128 (2004), 201–218.
Cawood, P.A., Hawkesworth, C.J., Dhuime, B., The continental record and the generation of continental crust. GSA Bullet. 125:1, 2 (2013), 14–32.
Cawood, P.A., Kröner, A., Pisarevsky, S., Precambrian plate tectonics: criteria and evidence GSA. Today 16:7 (2006), 4–11.
Claesson, S., Lundqvist, T., Origins and ages of Proterozoic granitoids in the Bothnian Basin, central Sweden; isotopic and geochemical constraints. Lithos 36 (1995), 115–140.
Condie, K.C., Aster, R.C., Episodic zircon age spectra of orogenic granitoids: The supercontinent connection and continental growth. Precambr. Res. 180 (2010), 227–236.
Condie, K.C., Kröner, A., The building blocks of continental crust: evidence for a major change in the tectonic setting of continental growth at the end of the Archean. Gondwana Res. 23:2 (2013), 394–402.
Condie, K.C., Bickford, M.E., Aster, R.C., Belousova, E., Scholl, D.W., Episodic zircon ages, Hf isotopic composition, and the preservation rate of continental crust. Geol. Soc. Am. Bull. 123 (2011), 951–957.
Corfu, F., U-Pb Age, setting and tectonic significance of the Anorthosite-Mangerite-Charnockite-Granite Suite, Lofoten-Vesterålen, Norway. J. Petrol. 45 (2004), 1799–1819.
Corfu, F., Multistage metamorphic evolution and nature of the amphibolite–granulite facies transition in Lofoten-Vesterålen, Norway, revealed by U-Pb in accessory minerals. Chem. Geol. 241:1–2 (2007), 108–128.
Corfu, F., Armitage, P.E.B., Kullerud, K., Bergh, S.G., Preliminary U-Pb geochronology in the West Troms Basement Complex, North Norway: Archaean and Palaeoproterozoic events and younger overprints. Bullet. Geol. Survey Norway 441 (2003), 61–72.
Couzinié S., Laurent, O., Zeh, A., Moyen, J.F., Villaros, A., Bouilhol, P., Post-collisional magmatism: crustal growth not identified by zircon Hf–O isotopes. Earth Planet. Sci. Lett. 456 (2016), 182–195.
Davis, W.J., Jones, A.G., Bleeker, W., Grütter, H., Lithosphere development in the Slave craton: a linked crustal and mantle perspective. Lithos 71 (2003), 575–589.
Dey, S., Pandey, U.K., Rai, A.K., Chaki, A., Geochemical and Nd isotope constraints on petrogenesis of granitoids fromNWpart of the eastern Dharwar craton: possible implications for late Archaean crustal accretion. J. Asian Earth Sci. 45 (2012), 40–56.
de Wit, M.J., On Archaean granites, greenstones, cratons and tectonics: does the evidence demand a verdict?. Precambr. Res. 91 (1998), 181–226.
Dhuime, B., Hawkesworth, C.J., Cawood, P.A., Storey, C.D., A change in the geodynamics of continental growth 3 billion years ago. Science 335 (2012), 1334–1336.
Dhuime, B., Hawkesworth, C.J., Delavault, H., Cawood, P.A., Continental growth seen through the sedimentary record. Sed. Geol. 357 (2017), 16–32.
Doré A.G., Lundin, E.R., Fichler, C., Olesen, O., Patterns of basement structure and reactivation along the NE Atlantic margin. J. Geol. Soc., London 157 (1997), 85–92.
Ernst, W.G., Archean plate tectonics, rise of Proterozoic supercontinentality and onset of regional, episodic stagnant-lid behavior. Gondwana Res. 15 (2009), 243–253.
Fischer, R., Gerya, T., Regimes of subduction and lithospheric dynamics in the Precambrian: 3D thermomechanical modelling. Gondwana Res. 37 (2016), 53–70.
Frost, B.R., Barnes, C.G., Collins, W.J., Arculus, R.J., Ellis, D.J., Frost, C.D., A geochemical classification for granitic rocks. J. Petrol. 42 (2001), 2033–2048.
Gaál, G., Gorbatschev, R., An outline of the Precambrian evolution of the Baltic Shield. Precambr. Res. 35 (1987), 15–52.
Gorbatschev, R., Precambrian Basement of the Scandinavian Caledonides. Gee, D.G., Sturt, B.A., (eds.) The Caledonide Orogen—Scandinavia and Related Areas, 1985, Wiley, Chichester, 197–212.
Gorbatschev, R., The Transscandinavian Igneous Belt—Introduction and background. Special Paper 37 Högdahl, K., Andersson, U.B., Eklund, O., (eds.) The Transscandinavian Igneous Belt (TIB) in Sweden; a Review of its Character and Evolution. Geological Survey of Finland, 2004, 9–15.
Gerdes, A., Zeh, A., Zircon formation versus zircon alteration – new insights from combined U-Pb and Lu–Hf in-situ LA–ICP–MS analyses, and consequences for the interpretation of Archean zircon from the Central Zone of the Limpopo Belt. Chem. Geol. 261 (2009), 230–243.
Gray, R., Pysklywec, R.N., Geodynamic models of mature continental collision: evolution of an orogen from lithospheric subduction to continental retreat/delamination. J. Geophys. Res., 117(B3), 2012, B03408.
Griffin, W.L., Taylor, P.N., Hakkinen, J.W., Heier, K.S., Iden, I.K., Krogh, E.J., Malm, O., Olsen, K.I., Ormaasen, D.E., Tveten, E., Archaean and Proterozoic crustal evolution in Lofoten-Vesterålen, N Norway. J. Geol. Soc. London 135 (1978), 629–647.
Griffin, W.L., Wang, X., Jackson, S.E., Pearson, N.J., O'Reilly, S.Y., Xu, X., Zhou, X., Zircon chemistry and magma mixing, SE China: in-situ analysis of Hf isotopes, Tonglu and Pingtan igneous complexes. Lithos 61 (2002), 237–269.
Guitreau, M., Blichert-Toft, J., Martin, H., Mojzsis, S., Albarède, F., Hafnium isotope evidence from Archean granitic rocks for deep-mantle origin of continental crust. Earth Planet. Sci. Lett. 337–338 (2012), 211–223.
Hall, R., The subduction initiation stage of the Wilson cycle. Wilson, R.W., Houseman, G.A., McCaffrey, K.J.W., Doré A.G., Buiter, S.J.H., (eds.) Fifty Years of the Wilson Cycle Concept in Plate Tectonics. Geological Society, 2018, Special Publications, London, 470, 10.1144/SP470.3.
Halla, J., Late Archean high-Mg granitoids (sanukitoids) in the southern Karelian domain, eastern Finland: Pb and Nd isotopic constraints on crust–mantle interactions. Lithos 79:1–2 (2005), 161–178.
Halla, J., van Hunen, J., Heilimo, E., Hölttä P., Geochemical and numerical constraints on Neoarchaean plate tectonics. Precambr. Res. 174 (2009), 155–162.
Hawkesworth, C.J., Kemp, A.I.S., Using hafnium and oxygen isotopes in zircons to unravel the record of crustal evolution. Chem. Geol. 226 (2006), 144–162.
Hawkesworth, C.J., Dhuime, B., Pietranik, A.B., Cawood, P.A., Kemp, A.I.S., Storey, C.D., The generation and evolution of the continental crust. J. Geol. Soc. (London) 167 (2010), 229–248.
Heilimo, E., Halla, J., Hölttä P., Discrimination and origin of the sanukitoid series: geochemical constraints from the Neoarchean western Karelian Province (Finland). Lithos 115 (2010), 27–39.
Heilimo, E., Halla, J., Huhma, H., Single-grain zircon U-Pb age constraints of the western and eastern sanukitoid zones in the Finnish part of the Karelian Province. Lithos 121 (2011), 87–99.
Heilimo, E., Halla, J., Lauri, L.S., Rämö O.T., Huhma, H., Kurhila, M.I., Front, K., The Paleoproterozoic Nattanen-type granites in northern Finland and vicinity – a postcollisional oxidized A-type suite. Bullet. Geol. Soc. Finland 81 (2009), 7–36.
Henkel, H., Magnetic crustal structures in Northern Fennoscandia. Tectonophysics 192 (1991), 57–79.
Herzberg, C., Condie, K.C., Korenaga, J., Thermal history of the earth and its petrological expression. Earth Planet. Sci. Lett. 292 (2010), 79–88.
Hiess, J., Bennett, V.C., Nutman, A.P., Williams, I.S., In situ U-Pb, O and Hf isotopic compositions of zircon and olivine from Eoarchaean rocks, West Greenland: New insights to making old crust. Geochim. Cosmochim. Acta 73 (2009), 4489–4516.
Hoffmann, J.E., Kröner, A., Hegner, E., Viehmann, S., Xie, H., Iaccheri, L.M., Schneider, K.P., Hofmann, A., Wong, J., Geng, H., Yang, J., Source composition, fractional crystallization and magma mixing processes in the 3.48–3.43 Ga Tsawela tonalite suite (Ancient Gneiss Complex, Swaziland) – Implications for Palaeoarchaean geodynamics. Precambr. Res. 276 (2016), 43–66.
Hoffmann, J.E., Nagel, T.J., Münker, C., Næraa, T., Rosing, M.T., Constraining the process of Eoarchean TTG formation in the Itsaq Gneiss Complex, southern West Greenland. Earth Planet. Sci. Lett. 388 (2014), 374–386.
Högdahl, K., Andersson, U.B., Eklund, O., The transscandinavian igneous belt (TIB) in Sweden: A review of its character and evolution. Geol. Surv. Finland Spec. Pap., 37, 2004, 125 p.
Iizuka, T., Campbell, I.H., Allen, C.M., Gill, J.B., Maruyama, S., Makoka, F., Evolution of the African continental crust as recorded by U-Pb, Lu–Hf and O isotopes in detrital zircons from modern rivers. Geochim. Cosmochim. Acta 107 (2013), 96–120.
Indrevær, K., Bergh, S.G., Koehl, J.B., Hansen, J.A., Schermer, E.R., Ingebrigtsen, A., Post-Caledonian brittle fault zones on the hyperextended SW Barents Sea Margin: new insights into onshore and offshore margin architecture. Norw. J. Geol. 93 (2013), 167–188.
Indrevær, K., Bergh, S.G., Linking onshore-offshore basement rock architecture and brittle faults on the submerged strandflat along the SW Barents Sea margin, using high-resolution (5 x 5 m) bathymetry data. Norw. J. Geol. 94 (2014), 1–34.
Jagoutz, O., Kelemen, P.B., Role of arc processes in the formation of continental crust. Annu. Rev. Earth Planet. Sci. 43 (2015), 363–404.
Jagoutz, O., Schmidt, M.W., Enggist, A., Burg, J.P., Hamid, D., Hussain, S., TTG-type plutonic rocks formed in a modern arc batholith by hydrous fractionation in the lower arc crust. Contrib. Miner. Petrol. 166:4 (2013), 1099–1118.
Janoušek, V., Farrow, C.M., Erban, V., Interpretation of whole-rock geochemical data in igneous geochemistry: introducing geochemical data toolkit (GCDkit). J. Petrol. 47 (2006), 1255–1259.
Johnson, T.E., Brown, M., Gardiner, N.J., Kirkland, C.L., Smithies, R.H., Earth's first stable continents did not form by subduction. Nature 543 (2017), 239–243.
Johnson, T.E., Brown, M., Kaus, B.J., VanTongeren, J.A., Delamination and recycling of Archaean crust caused by gravitational instabilities. Nat. Geosci. 7 (2013), 47–52.
Kamber, B., Ewart, A., Collerson, K.D., Bruce, M.C., McDonald, G.D., Fluid-mobile trace elements constraints on the role of slab melting and implications for Archaean crustal growth models. Contrib. Miner. Petrol. 144 (2002), 38–56.
Kemp, A.I.S., Foster, G.L., Schersten, A., Whitehouse, M.J., Darling, J., Storey, C., Concurrent Pb–Hf isotope analysis of zircon by laser ablation multi-collector ICP–MS, with implications for the crustal evolution of Greenland and the Himalayas. Chem. Geol. 261 (2009), 244–260.
Kemp, A.I.S., Wilde, S.A., Hawkesworth, C.J., Coath, C.D., Nemchin, A., Pidgeon, R.T., Vervoort, J.D., DuFrane, S.A., Hadean crustal evolution revisited: new con-straints from Pb–Hf isotope systematics of the Jack Hills zircons. Earth Planet. Sci. Lett. 296 (2010), 45–56.
Kleinhanns, I.C., Kramers, J.D., Kamber, B.S., Importance of water for Archaean granitoid petrology: a comparative study of TTG and potassic granitoids from Barberton Mountain Land, South Africa. Contrib. Miner. Petrol. 145 (2003), 377–389.
Koistinen, T., Stephens, M.B., Bogatchev, V., Nordgulen, Ø., Wennerström, M., Korhonen, J., Geological survey finland; geological survey Norway, geological survey Sweden; ministry of natural resources of Russia. Geological Map of the Fennoscandian Shield, Scale, 1:2, 2001, 000.
Korja, A., Korja, T., Luosto, U., Heikkinen, P., Seismic and geoelectric evidence for collisional and extensional events in the Fennoscandian shield – implications for Precambrian crustal evolution. Tectonophysics 219 (1993), 129–152.
Kornfält, K.A., Persson, P.O., Wikman, H., Granitoids from the Äspö area, southeastern Sweden - geochemical and geochronological data. GFF 119 (1997), 109–114.
Korsman, K., Korja, T., Pajunen, M., Virransalo, P., GGT/SVEKA Working Group, The GGT/SVEKA transect: structure and evolution of the continental crust in the Paleoproterozoic svecofennian orogen in Finland. Int. Geol. Rev. 41:4 (1999), 287–333.
Krill, A.G., Fareth, E., Rb-Sr whole-rock dates from Senja, North Norway. Nor. Geol. Tidsskr. 64 (1984), 171–172.
Kröner, A., Anhaeusser, C.R., Hoffmann, J.E., Wong, J., Geng, H., Hegner, E., Xie, H., Yang, J., Liu, D., Chronology of the oldest supracrustal sequences in the Palaeoarchaean Barberton Greenstone Belt, South Africa and Swaziland. Precambr. Res. 279 (2016), 123–143.
Kullerud, K., Corfu, F., Bergh, S.G., Davidsen, B., Ravna, E.K., U-Pb constraints on the Archaean and Early Proterozoic evolution of the West Troms Basement Complex, North Norway (Abstract). Bullet. Geol. Soc. Finland Special Issue, I, 2006, 79.
Kullerud, K., Skjerlie, K.P., Corfu, F., de la Rosa, J.D., The 2.40 Ga Ringvassøy mafic dykes, West Troms basement complex, Norway: the concluding act of early Palaeoproterozoic continental breakup. Precambr. Res. 150 (2006), 183–200.
Kurhila, M., Andersen, T., Rämö O.T., Diverse sources of crustal granitic magma: Lu–Hf isotope data on zircon in three Paleoproterozoic leucogranites of southern Finland. Lithos 115:1–4 (2010), 263–271.
Lahtinen, R., Garde, A.A., Melezhik, V.A., Paleoproterozoic evolution of Fennoscandia and Greenland. Episodes 31:1 (2008), 1–9.
Lahtinen, R., Korja, A., Nironen, M., Palaeoproterozoic tectonic evolution of the Fennoscandian Shield. Lehtinen, M., Nurmi, P., Rämö T., (eds.) The Precambrian Bedrock of Finland - Key to the evolution of the Fennoscandian Shield, 2005, Elsevier Science B.V, 418–532.
Lancaster, P., Storey, C.D., Hawkesworth, C.J., Dhuime, B., Understanding the roles of crustal growth and preservation in the detrital zircon record. Earth Planet. Sci. Lett. 305:3–4 (2011), 405–412.
Laurent, O., Couzinié S., Zeh, A., Vanderhaeghe, O., Moyen, J.F., Villaros, A., Gardien, V., Chelle-Michou, C., Protracted, coeval crust and mantle melting during Variscan late-orogenic evolution: U-Pb dating in the eastern French Massif Central. Int. J. Earth Sci. 106:2 (2017), 421–451.
Laurent, O., Doucelance, R., Martin, H., Moyen, J.-F., Differentiation of the late-Archaean sanukitoid series and some implications for crustal growth: insights from geochemical modelling on the Bulai pluton, Central Limpopo Belt South Africa. Precambrian Res. 227 (2013), 186–203.
Laurent, O., Martin, H., Doucelance, R., Moyen, J.F., Paquette, J.L., Geochem-istry and petrogenesis of high-K “sanukitoids” from the Bulai pluton, Cen-ral Limpopo Belt, South Africa: implications for geodynamic changes at the Archaean-Proterozoic boundary. Lithos 123 (2011), 73–91.
Laurent, O., Martin, H., Moyen, J.F., Doucelance, R., The diversity and evolu-tion of late-Archean granitoids: evidence for the onset of “modern-style” plate tectonics between 3.0 and 2.5 Ga. Lithos 205 (2014), 208–235.
Laurent, O., Zeh, A., A linear Hf isotope-age array despite different granitoid sources and complex Archean geodynamics: example from the Pietersburg block (South Africa). Earth Planet. Sci. Lett. 430 (2015), 326–338.
Lauri, L.S., Andersen, T., Hölttä P., Huhma, H., Graham, S., Evolution of the Archaean Karelian Province in the Fennoscandian shield in the light of U-Pb zircon ages and Sm–Nd and Lu–Hf isotope systematics. J. Geol. Soc. 168 (2011), 201–218.
Malm, O., Ormaasen, D.E., Mangerite–charnockite intrusives in the Lofoten-Vesterålen area, North Norway: petrography, chemistry and petrology. Nor. Geol. Unders. 338 (1978), 83–114.
Markl, G., REE constraints on fractionation processes of massive-type anorthosites on the Lofoten Islands, Norway. Mineral. Petrol. 72 (2001), 325–351.
Markl, G., Höhndorf, A., Isotopic constraints on the origin of AMCG-suite rocks on the Lofoten Islands, N Norway. Mineral. Petrol. 78 (2003), 149–171.
Martel, C., Pichavant, M., Holtz, F., Scaillet, B., Bourdier, J.L., Traineau, H., Effects of fO2 and H2O on andesite phase relations between 2 and 4 kbar. J. Geophys. Res. Solid Earth 104:B12 (1999), 29453–29470.
Martin, H., Moyen, J.-F., Guitreau, M., Blichert-Toft, J., Le Pennec, J.-L., Why Archaean TTG cannot be generated by MORB melting in subduction zones. Lithos 198–199 (2014), 1–13.
Martin, H., Smithies, R., Rapp, R.P., Moyen, J.F., Champion, D., An overview of adakite, TTG, and sanukitoid: relationships and some implications for crustal evolution. Lithos 79:1–2 (2005), 1–24.
Martinsson, O., Vaasjoki, M., Persson, P.O., U–Pb ages of Archaean to Palaeoproterozoic granitoids in the Torneträsk-Råstojaure area, northern Sweden. Bergman, S., (eds.) Radiometric dating results 4, Sveriges Geologiska Undersökning C831, 1999, 70–90.
McDonough, W.F., Sun, S.S., The composition of the Earth. Chem. Geol. 120:3–4 (1995), 223–253.
Mellqvist, C., Öhlander, B., Skiöld, T., Wikström, A., The Archaean-Proterozoic Palaeoboundary in the Luleå area, northern Sweden: field and isotope geochemical evidence for a sharp terrane boundary. Lithos 96:3–4 (1999), 225–243.
Mikkola, P., Huhma, H., Heilimo, E., Whitehouse, M., Archean crustal evolution of the Suomussalmi district as part of the Kianta Complex, Karelia: constraints from geochemistry and isotopes of granitoids. Lithos 125 (2011), 287–307.
Mjelde, R., Sellevoll, M.A., Shimamura, H., Iwasaki, T., Kanazawa, T., Crustal structure beneath Lofoten, N. Norway, from vertical incidence and wide-angle seismic data. Geophys. J. Int. 114 (1993), 116–126.
Montel, J.M., Vielzeuf, D., Partial melting of metagreywackes, part II. Compositions of minerals and melts. Contrib. Miner. Petrol. 128 (1997), 176–196.
Motuza, G., Motuza, V., Beliatsky, B., Savva, E., Volcanic rocks of the Ringvassøya greenstone belt (North Norway): Implication for the stratigraphy and tectonic Setting. J. Confr. (Abstract). EUG XI, 6(1), 2001, 578.
Motuza, G., Motuza, V., Beliatsky, B., Savva, E., The Ringvassøya greenstone belt (Tromsø North Norway): implications for a Mesoarchaean subduction zone. EUROPROBE time-slice symposium “Archaean and Proterozoic Plate Tectonics: Geological and Geophysical Records”. St Petersburg, Russia 2001 (2001), 43–44.
Moyen, J.F., The composite Archaean grey gneisses: petrological significance, and evidence for a non-unique tectonic setting for Archaean crustal growth. Lithos 123 (2011), 21–36.
Moyen, J.F., Laurent, O., Archaean tectonic systems: a view from igneous rocks. Lithos 302–303 (2018), 99–125.
Moyen, J.F., Martin, H., Forty years of TTG research. Lithos 148 (2012), 312–336.
Moyen, J.F., van Hunen, J., Short term episodicity of Archaean subduction. Geology 40:5 (2012), 451–454.
Moyen, J.F., Laurent, O., Chelle-Michou, C., Couzinié S., Vanderhaeghe, O., Zeh, A., Villaros, A., Gardien, V., Collision vs. subduction-related magmatism: two contrasting ways of granite formation and implications for crustal growth. Lithos 277 (2017), 154–177.
Moyen, J.F., Martin, H., Jayananda, M., Auvray, B., Late Archaean granites: a typology based on the Dharwar Craton (India). Precambr. Res. 127 (2003), 103–123.
Moyen, J.-F., Stevens, G., Kisters, A.F.M., Belcher, R.W., TTG plutons of the Barberton granitoid-greenstone terrain, South Africa. Van Kranendonk, M.J., Smithies, R.H., Bennett, V., (eds.) Earth's Oldest Rocks, 2007, Elsevier, 606–668.
Myhre, P.I., Corfu, F., Bergh, S.G., Palaeoproterozoic (2.0–1.95 Ga) pre-orogenic supracrustal sequences in the West Troms basement complex North Norway. Precambr. Res. 186 (2011), 89–100.
Myhre, P.I., Corfu, F., Bergh, S.G., Kullerud, K., U-Pb geochronology along an Archaean geotransect in the West Troms basement complex, North Norway. Norw. J. Geol. 93 (2013), 1–24.
Næraa, T., Scherstén, A., Rosing, M.T., Kemp, A.I.S., Hoffmann, J.E., Kokfelt, T.F., Whitehouse, M.J., Hafnium isotope evidence for a transition in the dynamics of continental growth 3.2 Gyr ago. Nature 485 (2012), 627–630.
Nagel, T.J., Hoffmann, J.E., Münker, C., Generation of Eoarchean tonalite–trondhjemite–granodiorite series from thickened mafic arc crust. Geology 40 (2012), 375–378.
Nair, R., Chacko, T., Role of oceanic plateaus in the initiation of subduction and origin of continental crust. Geology 36 (2008), 583–586.
Nasuti, A., Roberts, D., Dumais, M.A., Ofstad, F., Hyvönen, E., Stampolidis, A., Rodionov, A., New high-resolution aeromagnetic and radiometric surveys in Finnmark and North Troms: linking anomaly patterns to bedrock geology and structure. Norw. J. Geol. 95:3–4 (2015), 217–243.
Nebel, O., Nebel-Jacobsen, Y., Mezger, K., Berndt, J., Initial Hf isotope compositions in magmatic zircon from early Proterozoic rocks from the Gawler Craton, Australia: a test for zircon model ages. Chem. Geol. 241:1–2 (2007), 23–37.
Nebel, O., Vroon, P.Z., van Westrenen, W., Iizuka, T., Davies, G.R., The effect of sediment recycling in subduction zones on the Hf isotope character of new arc crust, Banda arc Indonesia. Earth Planet Sci. Lett. 303 (2011), 240–250.
Nebel-Jacobsen, Y., Münker, C., Nebel, O., Gerdes, A., Mezger, K., Nelson, D.R., Reworking of Earth's first crust: constraints from Hf isotopes in Archean zircons from Mt, Narryer Australia. Precambr. Res. 182 (2010), 175–186.
Nironen, M., The Svecofennian Orogen: a tectonic model. Precambr. Res. 86 (1997), 21–44.
Nironen, M., Proterozoic orogenic granitoid rocks. Lehtinen, M., Nurmi, P.A., Rämö O.T., (eds.) Precambrian Geology of Finland Key to the Evolution of the Fennoscandian Shield, 2005, Elsevier, Amsterdam, 443–479.
Niu, Y., et al. Continental collision zones are primary sites for net continental crust growth — A testable hypothesis. Earth-Sci. Rev. 127 (2013), 96–110.
Nutman, A.P., Bennett, V.C., Friend, C.R.L., The emergence of the Eoarchaean proto-arc: evolution of a c. 3700 Ma convergent plate boundary at Isua, southern West Greenland. Geol. Soc., London 389 (2015), 113–133.
Olesen, O., Torsvik, T.H., Tveten, E., Zwaan, K.B., Løseth, H., Henningsen, T., Basement structure of the continental margin in the Lofoten-Lopphavet area, northern Norway: constraints from potential field data, on land structural map-ping and palaeomagnetic data. Nor. Geol. Tidsskr. 77 (1997), 15–30.
Oliveira, M.A., Dall'Agnol, R., Almeida, J.A.C., Petrology of the Mesoarchean Rio Maria suite and the discrimination of sanukitoid series. Lithos 127 (2011), 192–209.
Oliveira, M.A., Dall'Agnol, R., Scaillet, B., Petrological constraints on crystallization conditions of MesoArchean Sanukitoid Rocks, southeastern Amazonian craton, Brazil. J. Petrol. 51 (2010), 2121–2148.
Opheim, J.A., Andresen, A., Basement-cover relationships on northern Vanna, Troms, Norway. Nor. Geol. Tidsskr. 69 (1989), 67–81.
Patchett, P.J., Gorbatschev, R., Todt, W., Origin of continental crust of 1.9–1.7 Ga age. Nd isotopes in the Svecofennian orogenic terrains of Sweden. Precambr. Res. 35 (1987), 145–160.
Patchett, P.J., Kouvo, O., Hedge, C.E., Tatsumoto, M., Evolution of continental crust and mantle heterogeneity: evidence from Hf isotopes. Contrib. Miner. Petrol. 78 (1981), 279–297.
Patiño-Douce, A.E., Beard, J.S., Effects on P, f(O2) and Mg/Fe ratio on dehydration melting of model metagreywackes. J. Petrol. 37:5 (1996), 999–1024.
Patiño-Douce, A.E., Harris, N., Experimental constraints on Himalayan anatexis. J. Petrol. 39:4 (1998), 689–710.
Patiño-Douce, A.E., Johnston, D., Phase equilibria and melt productivity in the politic system: implications for the origin of peraluminous granitoids and aluminous granulites. Contrib. Miner. Petrol. 107 (1991), 202–218.
Payne, J.L., McInerney, D.J., Barovich, K.M., Kirkland, C.L., Pearson, N.J., Hand, M., Strengths and limitations of zircon Lu–Hf and O isotopes in modelling crustal growth. Lithos 248–251 (2016), 175–192.
Peccerillo, A., Taylor, S.R., Geochemistry of Eocene calc-alkaline volcanic rocks from the Kastamonu area, Northern Turkey. Contrib. Miner. Petrol. 58:1 (1976), 63–81.
Pickering, J.M., Johnston, D.A., Fluid-absent melting behavior of a two-mica metapelite: experimental constraints on the origin of black hills granite. J. Petrol. 39:10 (1998), 1787–1804.
Polat, A., Growth of Archean continental crust in oceanic island arcs. Geology 40:4 (2012), 383–384.
Rapp, R.P., Watson, E.B., Dehydration melting of metabasalt at 8–32 kbar: implications for continental growth and crust–mantle recycling. J. Petrol. 36:4 (1995), 891–931.
Rapp, R.P., Norman, M., Laporte, D., Yaxley, G., Martin, H., Foley, S., Continent formation in the Archean and chemical evolution of the Cratonic lithosphere: melt–rock reaction experiments at 3–4 GPa and Petrogenesis of Archean Mg-diorites (Sanukitoids). J. Petrol. 51 (2010), 1237–1266.
Rapp, R.P., Shimizu, N., Norman, M.D., Applegate, G.S., Reaction between slab-derived melts and peridotite in the mantle wedge: experimental constraints at 3.8 GPa. Chem. Geol. 160 (1999), 335–356.
Reimink, J.R., Chacko, T., Stern, R.A., Heaman, L.M., The birth of a cratonic nucleus: Lithogeochemical evolution of the 4.02–2.94 Ga Acasta Gneiss Complex. Precambr. Res. 281 (2016), 453–472.
Roberts, D., Lippard, S.J., Inferred Mesozoic faulting in Finnmark: current status and offshore links. Bullet. Geol. Survey Norway, 55, 2005, 60.
Roberts, N.M.W., Slagstad, T., Parrish, R.R., Norry, M.J., Marker, M., Horstwood, M.S.A., Sedimentary recycling in arc magmas: geochemical and U-Pb–Hf–O constraints on the Mesoproterozoic Suldal Arc, SW Norway. Contrib. Miner. Petrol. 165 (2012), 507–523.
Roberts, N.M.W., Slagstad, T., Continental growth and reworking on the edge of the Columbia and Rodinia supercontinents; 1.86–0.9 Ga accretionary orogeny in southwest Fennoscandia. Int. Geol. Rev. 57:11–12 (2015), 1582–1606.
Roberts, N.M.W., Spencer, C.J., The Zircon Archive of Continent Formation through Time. London Geological Society 389 (2015), 197–225.
Rutanen, H., Andersson, U.B., Mafic plutonic rocks in a continental-arc setting: geochemistry of 1.87–1.78 Ga rocks from south-central Sweden and models of their palaeotectonic setting. Geol. J. 44 (2009), 241–279.
Schellart, W.P., Quantifying the net slab pull force as a driving mechanism for plate tectonics. Geophys. Res. Lett., 31, 2004, L07611.
Shand, S.J., Eruptive Rocks. Their Genesis, Composition, Classification, and Their Relation to Ore-Deposits with a Chapter on Meteorite. 1943, John Wiley & Sons, New-York.
Singh, J., Johannes, W., Dehydration melting of tonalites. 2. Compositions of melts and solids. Contrib. Miner. Petrol. 125 (1996), 26–44.
Sisson, T.W., Grove, T.L., Experimental investigations of the role of H2O in calc-alkaline differentiation and subduction zone magmatism. Contrib. Miner. Petrol. 113 (1993), 143–166.
Sisson, T.W., Ratajeski, K., Hankins, W.B., Glazner, A.F., Voluminous granitic magmas from common basaltic sources. Contrib. Miner. Petrol. 148 (2005), 635–661.
Sizova, E., Gerya, T., Brown, M., Perchuk, L.L., Subduction styles in the Precambrian: insight from numerical experiments. Lithos 116 (2010), 209–229.
Sizova, E., Gerya, T., Stüwe, K., Brown, M., Generation of felsic crust in the Archean: a geodynamic modeling perspective. Precambr. Res. 271 (2015), 198–224.
Skår, Ø., U-Pb geochronology and geochemistry of early Proterozoic rocksof the tectonic basement windows in central Nordland, Caledonides of north-central Norway. Precambr. Res. 116 (2002), 265–283.
Skjerlie, K.P., Johnston, A.D., Vapor-absent melting at 10 kbar of a biotite- and amphibole-bearing tonalitic gneiss: implications for the generation of A-type granites. Geology 20 (1994), 263–266.
Skjerlie, K.P., Johnston, A.D., Vapour-absentmelting from 10 to 20 kbar of crustal rocks that containmultiple hydrous phases: implications for anatexis in the deep to very deep continental crust and active continental margins. J. Petrol. 37 (1996), 661–691.
Slagstad, T., Willemoes-Wissing, B., Coint, N., Stampolidis, A., Ganerød, M., Ofstad, F., Geology and metallogenic potential of the northwesternmost Norrbotten Province around Altevatn in Troms, northern Norway. Norw. J. Geol. 95:3–4 (2015), 1–22.
Smithies, R.H., Champion, D.C., van Kranendonk, M.J., Formation of Paleoarchean continental crust through infracrustal melting of enriched basalt. Earth Planet. Sci. Lett. 281 (2009), 298–306.
Smithies, R.H., Ivanic, T.J., Lowrey, J.R., Morris, P.A., Barnes, S.J., Wyche, S., Lu, Y.J., Two distinct origins for Archean greenstone belts. Earth Planet. Sci. Lett. 487 (2018), 106–116.
Stephens, M.B., Gustavson, M., Ramberg, I.B., Zachrisson, E., The Caledonides of central-north Scandinavia—a tectonostratigraphic overview. Gee, D.G., Sturt, B.A., (eds.) The Caledonide Orogen—Scandinavia and Related Areas, 1985, Wiley, Chichester, 135–162.
Stern, R., Gerya, T., Subduction initiation in nature and models: a review. Tectonophysics, 2018, 10.1016/j.tecto.2017.10.014.
Stevens, G., Compositional controls on partial melting inhigh-grade metapelites; a petrological and experimental study. unpublished Ph.D. thesis, 1995, University of Manchester.
Thomas, R.J., Spencer, C., Bushi, A.M., Baglow, N., Boniface, N., de Kock, G., Horstwood, M.S.A., Hollick, L., Jacobs, J., Kajara, S., Kamihanda, G., Key, R.M., Maganga, Z., Mbawala, F., McCourt, W., Momburi, P., Moses, F., Mruma, A., Myambilwa, Y., Roberts, N.M.W., Saidi, H., Nyanda, P., Nyoka, K., Millar, I., Geochronology of the central Tanzania Craton and its southern and eastern orogenic margins. Precambr. Res. 277 (2016), 47–67.
van Hunen, J., van den Berg, A.P., Plate tectonics on the early earth: limitations imposed by strength and buoyancy of subducted lithosphere. Lithos 103 (2008), 217–235.
van Kranendonk, M.J., Two types of Archean continental crust: Plume and plate tectonics on early Earth. Am. J. Sci. 310:10 (2010), 1187–1209.
van Kranendonk, M.J., Hickman, A.H., Smithies, R.H., Champion, D.C., Paleoarchean development of a continental nucleus: the East Pilbara terrane of the Pilbara craton, Western Australia. Van Kranendonk, M.J., Smithies, R.H., Bennet, V., (eds.) Earth's Oldest Rocks, 2007, Elsevier, 307–337.
van Kranendonk, M.J., Smithes, R.H., Griffin, W.L., Huston, D.L., Hickman, A.H., Champion, D.C., Anhaeusser, C.R., Pirajno, F., Making it thick: a volcanic plateau origin of Palaeoarchean continental lithosphere of the Pilbara and Kaapvaal cratons. Geol. Soc. London 389 (2015), 83–111.
Vervoort, J.D., Kemp, A.I.S., Clarifying the zircon Hf isotope record of crust–mantle evolution. Chem. Geol. 425 (2016), 65–75.
Vezinet, A., Moyen, J.F., Stevens, G., Nicoli, G., Laurent, O., Couzinié S., Frei, D., A record of 0.5 Ga of evolution of the continental crust along the northern edge of the Kaapvaal Craton, South Africa: consequences for the understanding of Archean geodynamic processes. Precambr. Res. 305 (2018), 310–326.
Vielzeuf, D., Holloway, J.R., Experimental determination of the fluid-absent melting relations in the pelitic system. Consequences for crustal differentiation. Contrib. Miner. Petrol. 98 (1988), 257–276.
Watkins, J.M., Clemens, J.D., Treloar, P.J., Archaean TTGs as sources of younger granitic magmas: melting of sodic metatonalites at 0.6–1.2 GPa. Contrib. Miner. Petrol. 154 (2007), 91–110.
Whalen, J.B., Percival, J.A., McNicoll, V.J., Longstaffe, F.J., Geochemical and isotopic (Nd–O) evidence bearing on the origin of late- to post-orogenic high-K granitoid rocks in the western superior province: implications for late-Archaean tectonomagmatic processes. Precambr. Res. 132 (2004), 303–326.
Whitney, D.L., Evans, B.W., Abbreviations for names of rock-forming minerals. Am. Mineral. 95 (2010), 185–187.
Wiemer, D., Schrank, C.E., Murphy, D.T., Wenham, L., Allen, C.M., Earth's oldest stable crust in the Pilbara Craton formed by cyclic gravitational overturns. Nat. Geosci. 11 (2018), 357–361.
Wolf, M.B., Wyllie, P.J., Dehydration-melting of amphibolite at 10 kbar: the effects of temperature and time. Contrib. Miner. Petrol. 115 (1994), 369–383.
Wyman, D., A critical assessment of Neoarchean “plume only” geodynamics: evidence from the Superior Province. Precambr. Res. 229 (2013), 3–19.
Zamora, D., Fusion de la croûte océanique subductée: approche expérimentale et géochimique. Ph.D. thesis, 2000, Université Blaise-Pascal, Clermont-Ferrand, France, 314.
Zegers, T.E., van Keken, P.E., Middle Archean continent formation by crustal delamination. Geology 29:12 (2001), 1083–1086.
Zeh, A., Gerdes, A., Barton, J.M. Jr., Archean accretion and crustal evolution of the Kalahari Craton – the zircon age and Hf isotope record of granitic rocks from Barberton/Swaziland to the Francistown Arc. J. Petrol. 50 (2009), 933–966.
Zeh, A., Stern, R.A., Gerdes, A., The oldest zircons of Africa—Their U-Pb–Hf–O isotope and trace element systematics, and implications for Hadean to Archean crust–mantle evolution. Precambr. Res. 241 (2014), 203–230.
Zozulya, D., Kullerud, K., Ravna, E., Corfu, F., Savchenko, Y., Geology, age and geochemical constraints on the origin of the Late Archean Mikkelvik alkaline massif, West Troms Basement Complex in Northern Norway. Norwgian J. Geol. 89 (2009), 327–340.
Zwaan, K.B., Geology of the Precambrian West Troms Basement Complex, northern Norway, with special emphasis on the Senja Shear Belt: a preliminaryaccount. Bullet. Geol. Survey Norway 427 (1995), 33–36.
Zwaan, K.B., Tucker, R.D., Absolute and relative age relationships in the Precambrian West Troms Basement Complex, northern Norway (abstract). 22nd Nordic Geological Winter Meeting, Åbo, Finland, 1996, 237.