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Paleozoic tectonism on the East Gondwana margin: Evidence from SHRIMP U-Pb zircon geochronology of a migmatite-granite complex in West Antarctica

dc.contributor.authorSiddoway, Christine Smith
dc.contributor.authorFanning, Christopher
dc.date.accessioned2015-12-10T21:57:41Z
dc.date.issued2009
dc.date.updated2016-02-24T10:28:38Z
dc.description.abstractThe Fosdick Mountains migmatite-granite complex in West Antarctica records episodes of crustal melting and plutonism in Devonian-Carboniferous time that acted to transform transitional crust, dominated by immature oceanic turbidites of the accretionary margin of East Gondwana, into stable continental crust. West Antarctica, New Zealand and Australia originated as contiguous parts of this margin, according to plate reconstructions, however, detailed correlations are uncertain due to a lack of isotopic and geochronological data. Our study of the mid-crustal exposures of the Fosdick range uses U-Pb SHRIMP zircon geochronology to examine the tectonic environment and timing for Paleozoic magmatism in West Antarctica, and to assess a correlation with the better known Lachlan Orogen of eastern Australia and Western Province of New Zealand. NNE-SSW to NE-SW contraction occurred in West Antarctica in early Paleozoic time, and is expressed by km-scale folds developed both in lower crustal metasedimentary migmatite gneisses of the Fosdick Mountains and in low greenschist-grade turbidite successions of the upper crust, present in neighboring ranges. The metasedimentary rocks and structures were intruded by calc-alkaline, I-type plutons attributed to arc magmatism along the convergent East Gondwana margin. Within the Fosdick Mountains, the intrusions form a layered plutonic complex at lower structural levels and discrete plutons at upper levels. Dilational structures that host anatectic granite overprint plutonic layering and migmatitic foliation. They exhibit systematic geometries indicative of NNE-SSW stretching, parallel to a first-generation mineral lineation. New U-Pb SHRIMP zircon ages for granodiorite and porphyritic monzogranite plutons, and for leucogranites that occupy shear bands and other mesoscopic-scale structural sites, define an interval of 370 to 355 Ma for plutonism and migmatization. Paleozoic plutonism in West Antarctica postdates magmatism in the western Lachlan Orogen of Australia, but it coincides with that in the central part of the Lachlan Orogen and with the rapid main phase of emplacement of the Karamea Batholith of the Western Province, New Zealand. Emplaced within a 15 to 20 million year interval, the Paleozoic granitoids of the Fosdick Mountains are a product of subduction-related plutonism associated with high temperature metamorphism and crustal melting. The presence of anatectic granites within extensional structures is a possible indication of alternating strain states ('tectonic switching') in a supra-subduction zone setting characterized by thin crust and high heat flow along the Devonian-Carboniferous accretionary margin of East Gondwana.
dc.identifier.issn0040-1951
dc.identifier.urihttp://hdl.handle.net/1885/39888
dc.publisherElsevier
dc.sourceTectonophysics
dc.subjectKeywords: Accretionary orogen; East Gondwana; Migmatite-granite complex; SHRIMP U-Pb zircon geochronology; West Antarctica; Granite; Landforms; Silicate minerals; Tectonics; Zircon; Geochronology; accretionary prism; continental margin; extensional tectonics; geoch Accretionary orogen; East Gondwana; Migmatite-granite complex; SHRIMP U-Pb zircon geochronology; West Antarctica
dc.titlePaleozoic tectonism on the East Gondwana margin: Evidence from SHRIMP U-Pb zircon geochronology of a migmatite-granite complex in West Antarctica
dc.typeJournal article
local.bibliographicCitation.lastpage277
local.bibliographicCitation.startpage262
local.contributor.affiliationSiddoway, Christine Smith, Colorado College
local.contributor.affiliationFanning, Christopher, College of Physical and Mathematical Sciences, ANU
local.contributor.authoruidFanning, Christopher, u4029993
local.description.embargo2037-12-31
local.description.notesImported from ARIES
local.identifier.absfor040312 - Structural Geology
local.identifier.absfor040303 - Geochronology
local.identifier.absfor040313 - Tectonics
local.identifier.ariespublicationu4027924xPUB185
local.identifier.citationvolume477
local.identifier.doi10.1016/j.tecto.2009.04.021
local.identifier.scopusID2-s2.0-70350180275
local.identifier.thomsonID000272124400012
local.type.statusPublished Version

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