The Colorado Plateau is a large crustal block in the southwestern United States that has been raised intact nearly 2 km above sea level since Cretaceous marine sediments were deposited on its surface. Controversy exists concerning the thickness of the plateau crust and the source of its buoyancy. Interpretations of seismic data collected on the plateau vary as to whether the crust is closer to 40 or 50 km thick. A thick crust could support the observed topography of the Colorado Plateau isostatically, while a thinner crust would indicate the presence of an underlying low-density mantle, This paper reports results on long-offset seismic data collected during the 1989 segment of the U.S. Geological Survey Pacific to Arizona Crustal Experiment that extended from the Transition Zone into the Colorado Plateau in northwest Arizona, We apply two new methods to analyze long-offset data that employ finite difference travel time calculations: (1) a first-arrival time inverter to find upper crustal velocity structure and (2) a forward-modeling technique that allows the direct use of the inverted upper crustal solution in modeling secondary reflected arrivals. We find that the crustal thickness increases from 30 km beneath the metamorphic core complexes in the southern Basin and Range province to about 42 km beneath the northern Transition Zone and southern Colorado Plateau margin, We observe some crustal thinning (to similar to 37 km thick) and slightly higher lower crustal velocities farther inboard; beneath the Kaibab uplift on the north rim of the Grand Canyon the crust thickens to a maximum of 48 km. We observe a nonuniform crustal thickness beneath the Colorado Plateau that varies by similar to 15% and corresponds approximately to variations in topography with the thickest crust underlying the highest elevations, Crustal compositions (as inferred from seismic velocities) appear to be the same beneath the Colorado Plateau as those in the Basin and Range province to the southwest, implying that the plateau crust represents an unextended version of the Basin and Range. Some of the variability in crustal structure appears to correspond to preserved lithospheric discontinuities that date back to the Proterozoic Era.
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Univ Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
Western Washington Univ, Geol Dept, Bellingham, WA 98225 USAUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
Gase, Andrew C.
Bangs, Nathan L.
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Univ Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USAUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
Bangs, Nathan L.
Van Avendonk, Harm J. A.
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Univ Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USAUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
Van Avendonk, Harm J. A.
Bassett, Dan
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GNS Sci, POB 30368, Lower Hutt 5040, Wellington, New ZealandUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
Bassett, Dan
Henrys, Stuart
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GNS Sci, POB 30368, Lower Hutt 5040, Wellington, New ZealandUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
Henrys, Stuart
Arai, Ryuta
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Japan Inst Marine Earth Sci & Technol, Res Inst Marine Geodynam, Yokohama 2360001, JapanUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
Arai, Ryuta
Gou, Fujie
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Japan Inst Marine Earth Sci & Technol, Res Inst Marine Geodynam, Yokohama 2360001, JapanUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
Gou, Fujie
Barnes, Philip M.
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Natl Inst Water & Atmospher Res NIWA, POB 14901, Kilbirnie 6021, Wellington, New ZealandUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
Barnes, Philip M.
Kodaira, Shuichi
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Japan Inst Marine Earth Sci & Technol, Res Inst Marine Geodynam, Yokohama 2360001, JapanUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
Kodaira, Shuichi
Barker, Daniel H. N.
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GNS Sci, POB 30368, Lower Hutt 5040, Wellington, New ZealandUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
Barker, Daniel H. N.
Okaya, David
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Univ Southern Calif, Dept Earth Sci, Los Angeles, CA 90089 USAUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
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Geologic Research Center, GRI, BGP, Zhuozhou 072751, China
Institute of Marine Geosciences, Ocean University of China, Qingdao 266003, ChinaGeologic Research Center, GRI, BGP, Zhuozhou 072751, China
Chen, Hai-Qing
Fan, Jin-Yuan
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Geologic Research Center, GRI, BGP, Zhuozhou 072751, ChinaGeologic Research Center, GRI, BGP, Zhuozhou 072751, China
Fan, Jin-Yuan
He, Bao-Wei
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Geologic Research Center, GRI, BGP, Zhuozhou 072751, ChinaGeologic Research Center, GRI, BGP, Zhuozhou 072751, China
He, Bao-Wei
Chen, Yuan-Zhong
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Geologic Research Center, GRI, BGP, Zhuozhou 072751, ChinaGeologic Research Center, GRI, BGP, Zhuozhou 072751, China
Chen, Yuan-Zhong
Yan, Xiao-Li
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Geologic Research Center, GRI, BGP, Zhuozhou 072751, ChinaGeologic Research Center, GRI, BGP, Zhuozhou 072751, China
Yan, Xiao-Li
Fang, Kai
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Geologic Research Center, GRI, BGP, Zhuozhou 072751, ChinaGeologic Research Center, GRI, BGP, Zhuozhou 072751, China
Fang, Kai
Song, De-Cai
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Geologic Research Center, GRI, BGP, Zhuozhou 072751, ChinaGeologic Research Center, GRI, BGP, Zhuozhou 072751, China
Song, De-Cai
He, Li-Hong
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Geologic Research Center, GRI, BGP, Zhuozhou 072751, ChinaGeologic Research Center, GRI, BGP, Zhuozhou 072751, China