Plume-modified mantle flow in the northern Basin and Range and southern Cascadia back-arc region since ca. 12 Ma

Author:

Camp Victor E.1

Affiliation:

1. Department of Geological Sciences, San Diego State University, San Diego, California 92182, USA

Abstract

AbstractBimodal volcanism and rhyolite migration along the High Lava Plains in central Oregon (United States) lie above a broader feature defined by low seismic velocity in the upper mantle that emanates from the Yellowstone hotspot (northwest United States) and extends westward across the northern Basin and Range. It was emplaced by a westward current, driven in part by rapid buoyancy-driven flow across the east-west cratonic boundary of North America. Geothermometry studies and geochemical considerations suggest that the low-velocity feature may be composed of moderately hot, low-density mantle derived from the Yellowstone plume but diluted by thermomechanical erosion and entrainment of colder mantle lithosphere. Finger-like conduits of plume-modified mantle beneath Quaternary eruption sites delineate flow-line channels that have developed across the broader mantle structure since 2 Ma. These channels have allowed low-density mantle to accumulate against the Cascades arc, thus providing a heated mantle source for mafic magmatism in the Newberry (Oregon) and Medicine Lake (California) volcanic fields.

Publisher

Geological Society of America

Subject

Geology

Reference49 articles.

1. 40Ar/39Ar and paleomagnetic constraints on the age and areal extent of the Picabo volcanic field: Implications for the Yellowstone hotspot;Anders;Geosphere,2019

2. Upwelling asthenosphere beneath western Arabia and its regional implications;Camp;Journal of Geophysical Research,1992

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4. Yellowstone plume trigger for Basin and Range extension and coeval emplacement of the Nevada–Columbia Basin magmatic belt;Camp;Geosphere,2015

5. Uplift, rupture, and rollback of the Farallon slab reflected in volcanic perturbations along the Yellowstone adakite hot spot track;Camp;Journal of Geophysical Research,2017

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