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Tectonic development of the Colorado Plateau transition zone, central Arizona; insights from lower lithosphere xenoliths and volcanic host rocks

Alan D. Chapman, Nancy R. Riggs, Mihai N. Ducea, Jason B. Saleeby, Ojashvi Rautela and Jessie Shields
Tectonic development of the Colorado Plateau transition zone, central Arizona; insights from lower lithosphere xenoliths and volcanic host rocks (in Geologic excursions in southwestern North America, Philip A. Pearthree (editor))
Field Guide (Geological Society of America) (September 2019) 55: 209-235

Abstract

A growing body of evidence suggests that continental arc lower crust and underlying mantle wedge assemblages native to the Mojave Desert (i.e., the southern California batholith) were displaced eastward during Laramide shallow-angle subduction, and reattached to the base of the Colorado Plateau Transition Zone (central Arizona) and farther inboard. On this field trip, we highlight two xenolith localities from the Transition Zone (Camp Creek and Chino Valley) that likely contain remnants of the missing Mojave lithosphere. At these localities, nodules of garnet clinopyroxenite, the dominant xenolith type at both studied localities, yield low jadeite components in clinopyroxene, chemically homogeneous 'type-B' garnet, and peak conditions of equilibration at 600-900 degrees C and 9-28 kbar. These relations strongly suggest a continental arc residue ('arclogite'), rather than a lower-plate subduction ('eclogite'), origin. Zircon grains extracted from these nodules yield a bimodal age distribution with peaks at ca. 75 and 150 Ma, overlapping southern California batholith pluton ages, and suggesting a consanguineous relationship. In contrast, Mesozoic and early Cenozoic igneous rocks native to SW Arizona, with age peaks at ca. 60 and 170 Ma, do not provide as close a match. In light of these results, we suggest that Transition Zone xenoliths: (1) began forming in Late Jurassic time as a mafic keel to continental arc magmas emplaced into the Mojave Desert and associated with eastward subduction of the Farallon plate; (2) experienced a second ca. 80-70 Ma pulse of growth associated with increased magmatism in the southern California batholith; (3) were transported approximately 500 km eastward along the leading edge of the shallowly subducting Farallon plate; and (4) were reaffixed to the base of the crust at the new location, in central Arizona. Cenozoic zircon U-Pb, garnet-whole rock Sm-Nd, and titanite U-Pb ages suggest that displaced arclogite remained at elevated temperature (>700 degrees C) for 10s of m.y., following its dispersal, and until late Oligocene entrainment in host latite. The lack of arclogite and abundance of spinel peridotite xenoliths in Miocene and younger mafic volcanic host rocks (such as those at the San Carlos xenolith locality), and the presence of seismically fast and vertically dipping features beneath the western Colorado Plateau, suggest that arclogite has been foundering into the mantle and being replaced by upwelling asthenosphere since Miocene time.


ISSN: 2333-0937
EISSN: 2333-0945
Serial Title: Field Guide (Geological Society of America)
Serial Volume: 55
Title: Tectonic development of the Colorado Plateau transition zone, central Arizona; insights from lower lithosphere xenoliths and volcanic host rocks
Title: Geologic excursions in southwestern North America
Affiliation: Macalester College, Geology Department, St. Paul, MN, United States
Affiliation: University of Arizona, Arizona Geological Survey, Tucson, AZ, United States
Pages: 209-235
Published: 20190904
Text Language: English
Publisher: Geological Society of America, Boulder, CO, United States
References: 97
Accession Number: 2020-016668
Categories: Solid-earth geophysicsGeochronology
Document Type: Serial
Bibliographic Level: Analytic
Illustration Description: illus. incl. geol. sketch maps
N33°00'00" - N34°00'00", W113°00'00" - W111°00'00"
Secondary Affiliation: Northern Arizona University, USA, United StatesUniversity of Arizona, USA, United StatesCalifornia Institute of Technology, USA, United StatesCalifornia State University, USA, United States
Country of Publication: United States
Secondary Affiliation: GeoRef, Copyright 2020, American Geosciences Institute.
Update Code: 202011

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