Variations in magma source regions during large-scale continental extension
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[1] J. Walker,et al. Variations across and along a major continental rift: An interdisciplinary study of the Basin and Range Province, western USA , 1992 .
[2] D. Lux,et al. Thermal and barometric constraints on the intrusive and unroofing history of the Black Mountains: Implications for timing, initial dip, and kinematics of detachment faulting in the Death Valley Region, California , 1992 .
[3] D. DePaolo,et al. Isotopic evidence for lithospheric thinning during extension: Southeastern Great Basin , 1992 .
[4] A. Glazner,et al. Production of Isotopic Variability in Continental Basalts by Cryptic Crustal Contamination , 1992, Science.
[5] J. Walker,et al. Geochemical constraints on mode of extension in the Death Valley region , 1991 .
[6] N. Rogers,et al. Melting in the lithospheric mantle: Inverse modelling of alkali-olivine basalts from the Big Pine Volcanic Field, California , 1991 .
[7] B. Wernicke,et al. Basin and Range Extensional Tectonics Near the Latitude of Las Vegas, Nevada , 1991 .
[8] G. L. Farmer,et al. Nd, Sr, and O isotopic variations in metaluminous ash-flow tuffs and related volcanic rocks at the Timber Mountain/Oasis Valley Caldera, Complex, SW Nevada: implications for the origin and evolution of large-volume silicic magma bodies , 1991 .
[9] W. McDonough. Constraints on the composition of the continental lithospheric mantle , 1990 .
[10] L. Royden,et al. Core complex geometries and regional scale flow in the lower crust , 1990 .
[11] B. Wernicke,et al. Rapid uplift and crustal growth in extensional environments: An isotopic study from the Death Valley region, California , 1990 .
[12] W. McDonough,et al. Compositional constraints on the continental lithospheric mantle from trace elements in spinel peridotite xenoliths , 1989, Nature.
[13] S. Semken,et al. Isotopic Evidence on the Structure and Origin of Subcontinental Lithospheric Mantle in Southern Nevada , 1989 .
[14] K. Hodges,et al. Pre‐Pliocene Extension around the Gulf of California and the transfer of Baja California to the Pacific Plate , 1989 .
[15] Albrecht W. Hofmann,et al. Chemical differentiation of the Earth: the relationship between mantle, continental crust, and oceanic crust , 1988 .
[16] E. R. Oxburgh,et al. Helium, volatile fluxes and the development of continental crust , 1988 .
[17] S. Jacobsen. Isotopic and chemical constraints on mantle-crust evolution , 1988 .
[18] M. Bickle,et al. The Volume and Composition of Melt Generated by Extension of the Lithosphere , 1988 .
[19] M. Menzies,et al. Tectonic and magmatic transitions in the Western Great Basin, USA , 1988, Nature.
[20] D. DePaolo,et al. Chemical and isotopic evidence for lithospheric thinning beneath the Rio Grande rift , 1988, Nature.
[21] S. Jacobsen,et al. Nd and Sr isotope systematics of clastic metasediments from Isua, West Greenland: Identification of pre‐3.8 Ga Differentiated Crustal Components , 1988 .
[22] D. DePaolo,et al. Role of asthenosphere and lithosphere in the genesis of Late Cenozoic basaltic rocks from the Rio Grande Rift and adjacent regions of the southwestern United States , 1987 .
[23] Craig H. Jones. Is extension in Death Valley accommodated by thinning of the mantle lithosphere beneath the Sierra Nevada, California? , 1987 .
[24] D. DePaolo,et al. Proterozoic crustal history of the western United States as determined by neodymium isotopic mapping , 1987 .
[25] D. McKenzie,et al. The Generation and Compaction of Partially Molten Rock , 1984 .
[26] G. Wasserburg,et al. Sm-Nd isotopic evolution of chondrites and achondrites. II , 1984 .
[27] M. Menzies,et al. Isotope geochemistry of Cenozoic volcanic rocks reveals mantle heterogeneity below western USA , 1983, Nature.
[28] D. DePaolo. A neodymium and strontium isotopic study of the Mesozoic calc‐alkaline granitic batholiths of the Sierra Nevada and Peninsular Ranges, California , 1981 .
[29] D. DePaolo. Trace element and isotopic effects of combined wallrock assimilation and fractional crystallization , 1981 .
[30] H. Taylor. The effects of assimilation of country rocks by magmas on 18O/16O and 87Sr/86Sr systematics in igneous rocks , 1980 .
[31] G. Hanson. The application of trace elements to the petrogenesis of igneous rocks of granitic composition , 1978 .
[32] R. Kistler,et al. Variations in Sr, Rb, K, Na, and Initial Sr87/Sr86 in Mesozoic Granitic Rocks and Intruded Wall Rocks in Central California , 1973 .
[33] R. Fleck. Age and Tectonic Significance of Volcanic Rocks, Death Valley Area, California , 1970 .
[34] D. DePaolo,et al. The evolution of a silicic magma system: isotopic and chemical evidence from the Woods Mountains volcanic center, eastern California , 1989 .
[35] P. England,et al. Tectonomagmatic evolution of Cenozoic extension in the North American Cordillera , 1987, Geological Society, London, Special Publications.
[36] B. Wernicke,et al. Uniform-sense normal simple shear of the continental lithosphere , 1985 .
[37] R. Drake,et al. Cenozoic Sediment Ation and Sequence of Deformational Events at the Southeastern End of the Furnace Creek Strike Slip Fault Zone Death Valley Region California , 1985 .
[38] J. McAllister. Geology of the Furnace Creek borate area, Death Valley, Inyo County, California , 1970 .