Polymetamorphism, zircon growth and retention of early assemblages through the dynamic evolution of a continental arc in Fiordland, New Zealand
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R. P. King | Å. Fagereng | A. Cooper | J. Palin | J. Scott
[1] A. Cooper,et al. A younger age constraint on high‐grade metamorphism near George Sound in Fiordland, New Zealand , 2009 .
[2] J. Halpin,et al. Metastable persistence of pelitic metamorphic assemblages at the root of a Cretaceous magmatic arc – Fiordland, New Zealand , 2009 .
[3] J. Halpin,et al. Evidence for melt migration enhancing recrystallization of metastable assemblages in mafic lower crust, Fiordland, New Zealand , 2009 .
[4] A. Cooper,et al. Petrology and geochronology of the volcaniclastic and volcanogenic Mesozoic Loch Burn Formation in eastern Fiordland, New Zealand , 2008 .
[5] J. Palin,et al. LA‐ICP‐MS U‐Pb zircon ages from Mesozoic plutonic rocks in eastern Fiordland, New Zealand , 2008 .
[6] O. Vanderhaeghe,et al. Mobility of trace elements and oxygen in zircon during metamorphism: Consequences for geochemical tracing , 2008 .
[7] A. Cooper,et al. Plutonic rocks of the Median Batholith in southwest Fiordland, New Zealand: Field relations, geochemistry, and correlation , 2007 .
[8] S. Weaver,et al. Loch Burn Formation, Fiordland, New Zealand: SHRIMP U‐Pb ages, geochemistry and provenance , 2007 .
[9] C. Möller,et al. Linking deformation, migmatite formation and zircon U–Pb geochronology in polymetamorphic orthogneisses, Sveconorwegian Province, Sweden , 2007 .
[10] G. Gehrels,et al. Interaction of strong lower and weak middle crust during lithospheric extension in western New Zealand , 2007 .
[11] D. Rubatto,et al. Experimental zircon/melt and zircon/garnet trace element partitioning and implications for the geochronology of crustal rocks , 2007 .
[12] N. Kelly,et al. Zircon Behaviour and the Thermal Histories of Mountain Chains , 2007 .
[13] A. Cooper,et al. Early Cretaceous extensional exhumation of the lower crust of a magmatic arc: Evidence from the Mount Irene Shear Zone, Fiordland, New Zealand , 2006 .
[14] M. Gurnis,et al. Patterns of Late Cenozoic exhumation deduced from apatite and zircon U‐He ages from Fiordland, New Zealand , 2005 .
[15] N. Daczko,et al. Roles for fluid and/or melt advection in forming high‐P mafic migmatites, Fiordland, New Zealand , 2005 .
[16] N. Kelly,et al. An integrated microtextural and chemical approach to zircon geochronology: refining the Archaean history of the Napier Complex, east Antarctica , 2005 .
[17] T. Ireland,et al. The regional significance of Cretaceous magmatism and metamorphism in Fiordland, New Zealand, from U–Pb zircon geochronology , 2004 .
[18] T. Tsujimori,et al. Metamorphic evolution of kyanite–staurolite‐bearing epidote–amphibolite from the Early Palaeozoic Oeyama belt, SW Japan , 2004 .
[19] F. Corfu,et al. 16. Atlas of Zircon Textures , 2003 .
[20] J. Bradshaw,et al. The balloon Melange, northwest Nelson: Origin, structure, and emplacement , 2003 .
[21] T. John,et al. Partial eclogitisation of gabbroic rocks in a late Precambrian subduction zone (Zambia): prograde metamorphism triggered by fluid infiltration , 2003 .
[22] T. Ireland,et al. Geochronology and geochemistry of high‐pressure granulites of the Arthur River Complex, Fiordland, New Zealand: Cretaceous magmatism and metamorphism on the palaeo‐Pacific Margin , 2003 .
[23] J. Platt,et al. Dating high-grade metamorphism—constraints from rare-earth elements in zircon and garnet , 2003 .
[24] U. Schaltegger,et al. The Composition of Zircon and Igneous and Metamorphic Petrogenesis , 2003 .
[25] F. Corfu,et al. Atlas of Zircon Textures , 2003 .
[26] H. Zwingmann,et al. Structure and kinematics of oblique continental convergence in northern Fiordland, New Zealand , 2002 .
[27] N. Daczko,et al. Kyanite‐paragonite‐bearing assemblages, northern Fiordland, New Zealand: rapid cooling of the lower crustal root to a Cretaceous magmatic arc , 2002 .
[28] I. Campbell,et al. Relative oxidation states of magmas inferred from Ce(IV)/Ce(III) in zircon: application to porphyry copper deposits of northern Chile , 2002 .
[29] M. Gurnis,et al. Uplift in the Fiordland Region, New Zealand: Implications for Incipient Subduction , 2002, Science.
[30] J. Stevenson,et al. Successive hydration and dehydration of high‐P mafic granofels involving clinopyroxene–kyanite symplectites, Mt Daniel, Fiordland, New Zealand , 2002 .
[31] N. Daczko,et al. Thermomechanical evolution of the crust during convergence and deep crustal pluton emplacement in the Western Province of Fiordland, New Zealand , 2002 .
[32] T. Nijland,et al. Magmatic versus metamorphic origin of olivine-plagioclase coronas , 2002 .
[33] D. Rubatto. Zircon trace element geochemistry: partitioning with garnet and the link between U–Pb ages and metamorphism , 2002 .
[34] M. J. Holdaway. Recalibration of the GASP geobarometer in light of recent garnet and plagioclase activity models and versions of the garnet-biotite geothermometer , 2001 .
[35] N. Daczko,et al. Transformation of two‐pyroxene hornblende granulite to garnet granulite involving simultaneous melting and fracturing of the lower crust, Fiordland, New Zealand , 2001 .
[36] M. Erambert,et al. Interaction between fluid flow, fracturing and mineral growth during eclogitization, an example from the Sunnfjord area, Western Gneiss Region, Norway , 2001 .
[37] N. Daczko,et al. Evidence of early Cretaceous collisional-style orogenesis in Northern Fiordland, New Zealand and its effects on the evolution of the lower crust , 2001 .
[38] I. Graham,et al. New Zealand's Darran Complex and Mackay Intrusives; Rb-Sr whole-rock isochrons in the Median Tectonic Zone , 2000 .
[39] B. Chappell,et al. Identifying Accessory Mineral Saturation during Differentiation in Granitoid Magmas: an Integrated Approach , 2000 .
[40] L. P. Black,et al. Metamorphic zircon formation by solid‐state recrystallization of protolith igneous zircon , 2000 .
[41] N. Daczko,et al. Cretaceous high‐P granulites at Milford Sound, New Zealand: metamorphic history and emplacement in a convergent margin setting , 2000 .
[42] M. J. Holdaway. Application of new experimental and garnet Margules data to the garnet-biotite geothermometer , 2000 .
[43] R. Armstrong,et al. Dating mafic–ultramafic intrusions by ion-microprobing contact-melt zircon: examples from SW Sweden , 2000 .
[44] Powell,et al. Amphibolites with staurolite and other aluminous minerals: calculated mineral equilibria in NCFMASH , 2000 .
[45] N. Mortimer,et al. Geology and thermochronometry of the east edge of the Median Batholith (Median Tectonic Zone): a new perspective on Permian to Cretaceous crustal growth of New Zealand , 1999 .
[46] N. Mortimer,et al. Overview of the Median Batholith, New Zealand: a new interpretation of the geology of the Median Tectonic Zone and adjacent rocks , 1999 .
[47] C. Davids. A thermochronological study of southern Fiordland, New Zealand , 1999 .
[48] D. Gebauer,et al. Growth, annealing and recrystallization of zircon and preservation of monazite in high-grade metamorphism: conventional and in-situ U-Pb isotope, cathodoluminescence and microchemical evidence , 1999 .
[49] M. Kohn,et al. P -T paths from anatectic pelites , 1999 .
[50] G. Eby,et al. Geochronology and geochemistry of a Mesozoic magmatic arc system, Fiordland, New Zealand , 1998, Journal of the Geological Society.
[51] Roger Powell,et al. An internally consistent thermodynamic data set for phases of petrological interest , 1998 .
[52] G. Gibson,et al. SHRIMP monazite and zircon geochronology of high‐grade metamorphism in New Zealand , 1998 .
[53] T. Ireland,et al. EXTENSION OF DELAMERIAN (ROSS) OROGEN INTO WESTERN NEW ZEALAND: EVIDENCE FROM ZIRCON AGES AND IMPLICATIONS FOR CRUSTAL GROWTH ALONG THE PACIFIC MARGIN OF GONDWANA , 1996 .
[54] E. Brown. High‐pressure metamorphism caused by magma loading in Fiordland, New Zealand , 1996 .
[55] D. Gebauer,et al. Multiple zircon growth and recrystallization during polyphase Late Carboniferous to Triassic metamorphism in granulites of the Ivrea Zone (Southern Alps): an ion microprobe (SHRIMP) study , 1996 .
[56] T. Ireland,et al. Granulite formation during continental extension in Fiordland, New Zealand , 1995, Nature.
[57] N. MacRae,et al. Secondary-ion mass spectrometry and geology , 1995 .
[58] C. Landis,et al. Uranium‐lead zircon ages from the Median Tectonic Zone, New Zealand , 1994 .
[59] J. Bradshaw. A review of the Median Tectonic Zone: Terrane boundaries and terrane amalgamation near the Median Tectonic Line , 1993 .
[60] P. Blattner. The North Fiordland transcurrent convergence , 1991 .
[61] J. Bradshaw. Zoned garnets in metapelites in western Fiordland, southwest New Zealand: polychronic crystallisation and insight into the nature and extent of early Cretaceous regional metamorphism , 1991 .
[62] J. Bradshaw. Geology of crystalline rocks of northern Fiordland: Details of the granulite facies Western Fiordland Orthogneiss and associated rock units , 1990 .
[63] J. Bradshaw. Origin and metamorphic history of an Early Cretaceous polybaric granulite terrain, Fiordland, southwest New Zealand , 1989 .
[64] I. Mcdougall,et al. Age constraints on metamorphism and the development of a metamorphic core complex in Fiordland, southern New Zealand , 1988 .
[65] P. Koons,et al. The Effects of Disequilibrium and Deformation on the Mineralogical Evolution of Quartz Diorite During Metamorphism in the Eclogite Facies , 1987 .
[66] D. Kimbrough,et al. Western Fiordland orthogneiss: Early Cretaceous arc magmatism and granulite facies metamorphism, New Zealand , 1986 .
[67] N. Chatterjee,et al. The system CaO-Al2O3-SiO2-H2O: new phase equilibria data, some calculated phase relations, and their petrological applications , 1984 .
[68] W. Compston,et al. U‐Pb geochronology of zircons from lunar breccia 73217 using a sensitive high mass‐resolution ion microprobe , 1984 .
[69] R. Tracy. Chapter 9. COMPOSITIONAL ZONING and INCLUSIONS in METAMORPHIC MINERALS , 1982 .
[70] J. Williams,et al. Age and status of the Mackay Intrusives in the Eglinton—upper Hollyford area , 1978 .
[71] J. Williams. Eglinton Volcanics—stratigraphy, petrography, and metamorphism , 1978 .
[72] G. Oliver. Feldspathic hornblende and garnet granulites and associated anorthosite pegmatites from Doubtful Sound, Fiordland, New Zealand , 1977 .
[73] B. Leake,et al. Report. Nomenclature of Amphiboles: Report of the Subcommittee on Amphiboles of the International Mineralogical Association Commission on New Minerals and Mineral Names , 1971, Mineralogical Magazine.
[74] C. Landis,et al. Metamorphic belts and orogenesis in southern New Zealand , 1967 .
[75] Rocnn Pownr. Optimal geothermometry and geobarometry , 2007 .
[76] J. Bradshaw,et al. New Zealand tectonostratigraphy and implications from conglomeratic rocks for the configuration of the SW Pacific margin of Gondwana , 2005, Geological Society, London, Special Publications.
[77] S. Bowring,et al. Tempo of burial and exhumation within the deep roots of a magmatic arc, Fiordland, New Zealand , 2005 .
[78] N. Mortimer. New Zealand's Geological Foundations , 2004 .
[79] P. O'Brien,et al. Linking growth episodes of zircon and metamorphic textures to zircon chemistry: an example from the ultrahigh-temperature granulites of Rogaland (SW Norway) , 2003, Geological Society, London, Special Publications.
[80] Martin Roddaz,et al. Western Moroccan Mesetaの前地盆地火成活動と,それに関わる地球力学的過程 , 2002 .
[81] I. Buick,et al. Zircon and monazite response to prograde metamorphism in the Reynolds Range, central Australia , 2001 .
[82] D. Rubie. Disequilibrium during metamorphism: the role of nucleation kinetics , 1998, Geological Society, London, Special Publications.
[83] G. Gibson. Uplift and Exhumation of Middle and Lower Crustal Rocks in an Extensional Tectonic Setting, Fiordland, New Zealand , 1990 .
[84] M. Salisbury,et al. Exposed cross-sections of the continental crust , 1990 .
[85] R. Tracy. Compositional zoning and inclusions in metamorphic minerals , 1982 .
[86] G. Gibson. Polyphase deformation and its relation to metamorphic crystallisation in rocks at Wilmot Pass, central Fiordland , 1982 .