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Deciphering igneous and metamorphic events in high-grade rocks of the Wilmington Complex, Delaware; morphology, cathodoluminescence and backscattered electron zoning, and SHRIMP U-Pb geochronology of zircon and monazite

John N. Aleinikoff, William S. Schenck, Margaret O. Plank, LeeAnn Srogi, C. Mark Fanning, Sandra L. Kamo and Howell Bosbyshell
Deciphering igneous and metamorphic events in high-grade rocks of the Wilmington Complex, Delaware; morphology, cathodoluminescence and backscattered electron zoning, and SHRIMP U-Pb geochronology of zircon and monazite
Geological Society of America Bulletin (February 2006) 118 (1-2): 39-64

Abstract

High-grade rocks of the Wilmington Complex, northern Delaware and adjacent Maryland and Pennsylvania, contain morphologically complex zircons that formed through both igneous and metamorphic processes during the development of an island-arc complex and suturing of the arc to Laurentia. The arc complex has been divided into several members, the protoliths of which include both intrusive and extrusive rocks. Metasedimentary rocks are interlayered with the complex and are believed to be the infrastructure upon which the arc was built.In the Wilmington Complex rocks, both igneous and metamorphic zircons occur as elongate and equant forms. Chemical zoning, shown by cathodoluminescence (CL), includes both concentric, oscillatory patterns, indicative of igneous origin, and patchwork and sector patterns, suggestive of metamorphic growth. Metamorphic monazites are chemically homogeneous, or show oscillatory or spotted chemical zoning in backscattered electron images.U-Pb geochronology by sensitive high resolution ion microprobe (SHRIMP) was used to date complexly zoned zircon and monazite. All but one member of the Wilmington Complex crystallized in the Ordovician between ca. 475 and 485 Ma; these rocks were intruded by a suite of gabbro-to-granite plutonic rocks at 434+ or -5 Ma. Detrital zircons in metavolcanic and metasedimentary units were derived predominantly from 0.9 to 1.4 Ga (Grenvillian) basement, presumably of Laurentian origin. Amphibolite to granulite facies metamorphism of the Wilmington Complex, recorded by ages of metamorphic zircon (428+ or -4 and 432+ or -6 Ma) and monazite (429+ or -2 and 426+ or -3 Ma), occurred contemporaneously with emplacement of the younger plutonic rocks. On the basis of varying CL zoning patterns and external morphologies, metamorphic zircons formed by different processes (presumably controlled by rock chemistry) at slightly different times and temperatures during prograde metamorphism. In addition, at least three other thermal episodes are recorded by monazite growth at 447+ or -4, 411+ or -3, and 398+ or -3 Ma.


ISSN: 0016-7606
EISSN: 1943-2674
Coden: BUGMAF
Serial Title: Geological Society of America Bulletin
Serial Volume: 118
Serial Issue: 1-2
Title: Deciphering igneous and metamorphic events in high-grade rocks of the Wilmington Complex, Delaware; morphology, cathodoluminescence and backscattered electron zoning, and SHRIMP U-Pb geochronology of zircon and monazite
Affiliation: U. S. Geological Survey, Denver, CO, United States
Pages: 39-64
Published: 200602
Text Language: English
Publisher: Geological Society of America (GSA), Boulder, CO, United States
References: 94
Accession Number: 2006-013193
Categories: Igneous and metamorphic petrologyGeochronology
Document Type: Serial
Bibliographic Level: Analytic
Illustration Description: illus. incl. 8 tables, geol. sketch maps
N39°16'60" - N39°52'00", W75°47'60" - W75°25'00"
Secondary Affiliation: Delaware Geological Survey, USA, United StatesWest Chester University, USA, United StatesAustralian National University, AUS, AustraliaUniversity of Toronto, CAN, Canada
Country of Publication: United States
Secondary Affiliation: GeoRef, Copyright 2019, American Geosciences Institute. Reference includes data supplied by the Geological Society of America, Boulder, CO, United States
Update Code: 200605
Program Name: USGSOPNon-USGS publications with USGS authors

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