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Detrital-zircon record of the early Mesozoic southwestern Sierra Nevada arc preserved in Lower Cretaceous intra-arc and forearc deposits of central California, USA

Michael W. Martin and Diane Clemens-Knott
Detrital-zircon record of the early Mesozoic southwestern Sierra Nevada arc preserved in Lower Cretaceous intra-arc and forearc deposits of central California, USA (in Late Jurassic margin of Laurasia; a record of faulting accommodating plate rotation, Thomas H. Anderson (editor), Alexei N. Didenko (editor), Cari L. Johnson (editor), Alexander I. Khanchuk (editor) and James H. MacDonald (editor))
Special Paper - Geological Society of America (2015) 513: 269-284

Abstract

Late Triassic through Early Cretaceous detrital zircon separated from Lower Cretaceous sedimentary strata provides a record of arc magmatism that is not obscured by products of the mid- to Late Cretaceous surge, which dominate the exposed Sierra Nevada batholith. Matching U-Pb age-probability maxima to U-Pb dates of exposed arc plutonic rocks provides confirmation that the detrital zircon was sourced in the erupting and eroding Sierra Nevada arc. These data suggest that magmatic productivity in the southwestern arc increased steadily through the Middle Jurassic, from an Early Jurassic lull through the Late Jurassic. The detrital-zircon record documents an original footprint of the Early Cretaceous arc extending from its current exposure in the western Sierra Nevada foothills northwestward into the eastern Sacramento Valley, where its relatively mafic roots are presumably buried beneath younger sedimentary strata infilling the Great Valley. The sparse record of Late Triassic magmatism preserved in the analyzed intra-arc and forearc deposits likely reflects greater separations in both time and space between the Early Cretaceous basins and the Triassic arc. Analysis of an atypically dense sample set from the Goldstein Peak Formation intra-arc basin deposits, in conjunction with new data from the Lower Cretaceous Gravelly Flat Formation and published data from other Lower Cretaceous forearc strata of the Great Valley Group, suggests that an even greater density and broader geographic distribution of detrital-zircon samples are needed to more completely reconstruct the record of arc magmatism.


ISSN: 0072-1077
EISSN: 2331-219X
Coden: GSAPAZ
Serial Title: Special Paper - Geological Society of America
Serial Volume: 513
Title: Detrital-zircon record of the early Mesozoic southwestern Sierra Nevada arc preserved in Lower Cretaceous intra-arc and forearc deposits of central California, USA
Title: Late Jurassic margin of Laurasia; a record of faulting accommodating plate rotation
Author(s): Martin, Michael W.Clemens-Knott, Diane
Author(s): Anderson, Thomas H.editor
Author(s): Didenko, Alexei N.editor
Author(s): Johnson, Cari L.editor
Author(s): Khanchuk, Alexander I.editor
Author(s): MacDonald, James H.editor
Affiliation: California State University, Department of Geological Sciences, Fullerton, CA, United States
Affiliation: Department of Geology and Environmental Science, University of Pittsburgh, Pittsburgh, PA, United States
Pages: 269-284
Published: 2015
Text Language: English
Publisher: Geological Society of America (GSA), Boulder, CO, United States
References: 81
Accession Number: 2016-088114
Categories: Geochronology
Document Type: Serial
Bibliographic Level: Analytic
Illustration Description: illus. incl. 4 tables, sketch map
N36°30'00" - N37°00'00", W120°00'00" - W119°30'00"
Country of Publication: United States
Secondary Affiliation: GeoRef, Copyright 2017, American Geosciences Institute. Reference includes data supplied by the Geological Society of America, Boulder, CO, United States
Update Code: 201643
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