U–Pb zircon study of tectonically bounded blocks of 2940–2840 Ma crust with different metamorphic histories, Paamiut region, South-West Greenland: implications for the tectonic assembly of the North Atlantic craton
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[1] C. Friend,et al. Field recognition of rocks totally retrogressed from granulite facies: an example from Archaean rocks in the Paamiut region, South-West Greenland , 1997 .
[2] C. Friend,et al. U-Pb isotopic evidence for the accretion of different crustal blocks to form the Lewisian Complex of northwest Scotland , 1997 .
[3] A. Garde. Accretion and evolution of an Archaean high-grade grey gneiss – amphibolite complex: the Fiskefjord area, southern West Greenland , 1997 .
[4] S. Mojzsis,et al. Recognition of > or = 3850 Ma water-lain sediments in West Greenland and their significance for the early Archaean Earth. , 1997, Geochimica et cosmochimica acta.
[5] A. Nutman,et al. TIMING OF LATE ARCHAEAN TERRANE ASSEMBLY, CRUSTAL THICKENING AND GRANITE EMPLACEMENT IN THE NUUK REGION, SOUTHERN WEST GREENLAND , 1996 .
[6] M. Whitehouse,et al. Conflicting mineral and whole-rock isochron ages from the Late-Archaean Lewisian complex of northwestern Scotland: Implications for geochronology in polymetamorphic high-grade terrains , 1996 .
[7] A. Nutman,et al. The Itsaq Gneiss Complex of southern West Greenland; the world's most extensive record of early crustal evolution (3900-3600 Ma) , 1996 .
[8] W. Compston,et al. Two Carboniferous Ages: A Comparison of Shrimp Zircon Dating with Conventional Zircon Ages and 40Ar/39Ar Analysis , 1995 .
[9] A. Cohen,et al. Archaean crustal development in the Lewisian complex of northwest Scotland , 1994, Nature.
[10] O. V. Breemen,et al. U-Pb zircon dating: a comparison of ion microprobe and single grain conventional analyses , 1994 .
[11] A. Nutman,et al. Large‐scale crustal structure of the Northwestern Yilgarn Craton, western Australia: Evidence from Nd isotopic data and zircon geochronology , 1993 .
[12] A. Nutman,et al. Response of zircon U−Pb isotopes and whole-rock geochemistry to CO2 fluid-induced granulite-facies metamorphism, Kabbaldurga, Karnataka, South India , 1992 .
[13] C. Friend,et al. Late Archean Prograde Amphibolite- to Granulite-Facies Relations in the Fiskenæsset Region, Southern West Greenland , 1992, The Journal of Geology.
[14] A. Garde. Thermal granulite-facies metamorphism with diffuse retrogression in Archaean orthogneisses, Fiskefjord, southern West Greenland , 1990 .
[15] A. Nutman,et al. Evolution and assembly of Archean Gneiss Terranes in the Godthåbsfjord Region, southern west Greenland: Structural, metamorphic, and isotopic evidence , 1989 .
[16] W. Compston,et al. UPb single-zircon age for the Tinissaq gneiss of southern West Greenland: A controversy resolved , 1989 .
[17] S. J. Goldstein,et al. SmNd age of the Fisken˦sset Anorthosite Complex, West Greenland , 1989 .
[18] A. Nutman,et al. Late Archaean terrane accretion in the Godthåb region, southern West Greenland , 1988, Nature.
[19] I. Williams,et al. Isotopic evidence for the Precambrian provenance and Caledonian metamorphism of high grade paragneisses from the Seve Nappes, Scandinavian Caledonides , 1987 .
[20] A. Nutman,et al. Late-Archaean tectonics in the Færingehavn–Tre Brødre area, south of Buksefjorden, southern West Greenland , 1987, Journal of the Geological Society.
[21] P. Kinny. An ion microprobe study of uranium-lead and hafnium isotopes in natural zircon , 1987 .
[22] W. Compston,et al. The age and Pb loss behaviour of zircons from the Isua supracrustal belt as determined by ion microprobe , 1986 .
[23] A. Nutman,et al. The Archean geology of the Godthabsfjord Region, southern west Greenland (includes excursion guide) , 1986 .
[24] F. Kalsbeek,et al. Pb isotopic evidence for early Archaean crust in South Greenland , 1986 .
[25] L. Ashwal. Workshop on Early Crustal Genesis: The World's Oldest Rocks , 1986 .
[26] F. Kalsbeek,et al. Age and origin of early Proterozoic dolerite dykes in South-West Greenland , 1985 .
[27] W. Compston,et al. U‐Pb geochronology of zircons from lunar breccia 73217 using a sensitive high mass‐resolution ion microprobe , 1984 .
[28] G. Hanson,et al. Reworking of sialic crust as represented in late Archean–age gneisses, northern Labrador , 1982 .
[29] P. Coney,et al. Cordilleran suspect terranes , 1980, Nature.
[30] P. Hamilton,et al. Sm—Nd systematics of Lewisian gneisses: implications for the origin of granulites , 1979, Nature.
[31] R. Pidgeon,et al. Dating of igneous and metamorphic events in the Fiskenaesset region of southern west Greenland , 1978 .
[32] A. Crane. Correlation of metamorphic fabrics and the age of Lewisian metasediments near Loch Maree , 1978, Scottish Journal of Geology.
[33] R. Steiger,et al. Subcommission on geochronology: Convention on the use of decay constants in geo- and cosmochronology , 1977 .
[34] A. Stewart,et al. Book reviewThe Early Precambrian of Scotland and Related Rocks of Greenland: R.G. Park and J. Tarney (Editors). University of Keele, England, 1973, 194 pp., £ 3.00 , 1976 .
[35] G. L. Cumming,et al. Ore lead isotope ratios in a continuously changing earth , 1975 .
[36] G. Rivalenti. Chemistry and Differentiation of Mafic Dikes in an area near Fiskenaesset, West Greenland , 1975 .
[37] A. Beach,et al. Amphibolitization of Scourian granulites , 1974, Scottish Journal of Geology.
[38] J. Watson,et al. The pre-Torridonian metamorphic history of the Loch Torridon and Scourie areas in the North-West Highlands, and its bearing on the chronological classification of the Lewisian , 1950, Quarterly Journal of the Geological Society of London.