Experimental calibration of oxygen isotope fractionation between quartz and zircon
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[1] E. Watson,et al. Sub-micron scale distributions of trace elements in zircon , 2009 .
[2] T. Harrison,et al. Low heat flow inferred from >4 Gyr zircons suggests Hadean plate boundary interactions , 2008, Nature.
[3] D. Stockli,et al. Dynamic Magma Systems, Crustal Recycling, and Alteration in the Central Sierra Nevada Batholith: the Oxygen Isotope Record , 2008 .
[4] C. Manning,et al. Equilibrium high-temperature Fe isotope fractionation between fayalite and magnetite: An experimental calibration , 2008 .
[5] E. Watson,et al. A thermobarometer for sphene (titanite) , 2008 .
[6] D. Cherniak. Si diffusion in zircon , 2008 .
[7] J. Valley,et al. Origin and Evolution of Silicic Magmatism at Yellowstone Based on Ion Microprobe Analysis of Isotopically Zoned Zircons , 2008 .
[8] J. Valley,et al. Optically continuous silcrete quartz cements of the St. Peter Sandstone: High precision oxygen isotope analysis by ion microprobe , 2007 .
[9] E. Watson,et al. Temperature spectra of zircon crystallization in plutonic rocks , 2007 .
[10] T. M. Harrison,et al. Constraints on Hadean zircon protoliths from oxygen isotopes, Ti‐thermometry, and rare earth elements , 2007 .
[11] E. Watson,et al. New thermodynamic models and revised calibrations for the Ti-in-zircon and Zr-in-rutile thermometers , 2007 .
[12] E. B. WlrsoN. A simple model for sector zoning in slowly grown crystals : Implications for growth rate and lattice diffusion , with emphasis on accessory minerals in crustal rocks , 2007 .
[13] J. B. Thomas,et al. Crystallization thermometers for zircon and rutile , 2006 .
[14] T. M. Harrison,et al. Heterogeneous Hadean Hafnium: Evidence of Continental Crust at 4.4 to 4.5 Ga , 2005, Science.
[15] M. Basei,et al. 4.4 billion years of crustal maturation: oxygen isotope ratios of magmatic zircon , 2005 .
[16] S. Wilde,et al. Magmatic δ18O in 4400–3900 Ma detrital zircons: A record of the alteration and recycling of crust in the Early Archean , 2005 .
[17] T. M. Harrison,et al. Zircon Thermometer Reveals Minimum Melting Conditions on Earliest Earth , 2005, Science.
[18] P. Hoskin. Trace-element composition of hydrothermal zircon and the alteration of Hadean zircon from the Jack Hills, Australia , 2005 .
[19] S. A. Wildeb,et al. Magmatic y 18 O in 4400 – 3900 Ma detrital zircons : A record of the alteration and recycling of crust in the Early Archean , 2005 .
[20] I. Franchi,et al. Further Characterisation of the 91500 Zircon Crystal , 2004 .
[21] E. Watson,et al. A conceptual model for near-surface kinetic controls on the trace-element and stable isotope composition of abiogenic calcite crystals , 2004 .
[22] J. Valley,et al. Volcanic arc of Kamchatka: a province with high-δ18O magma sources and large-scale 18O/16O depletion of the upper crust , 2004 .
[23] R. Clayton,et al. Oxygen isotope salt effects at high pressure and high temperature and the calibration of oxygen isotope geothermometers , 2003 .
[24] J. Valley,et al. Empirical calibration of oxygen isotope fractionation in zircon , 2003 .
[25] Yong‐Fei Zheng,et al. Calculation of oxygen isotope fractionation in magmatic rocks , 2003 .
[26] J. Valley,et al. Oxygen isotope study of the Long Valley magma system, California: isotope thermometry and convection in large silicic magma bodies , 2002 .
[27] S. Hoernes,et al. Oxygen isotope fractionation between zircon and water experimental determination and comparison with quartz-zircon calibrations , 2002 .
[28] B. Kowallis,et al. Empirical determination of oxygen isotope fractionation factors for titanite with respect to Zircon and Quartz , 2001 .
[29] J. Valley,et al. Low-δ18O Rhyolites from Yellowstone: Magmatic Evolution Based on Analyses of Zircons and Individual Phenocrysts , 2001 .
[30] T. M. Harrison,et al. Oxygen-isotope evidence from ancient zircons for liquid water at the Earth's surface 4,300 Myr ago , 2001, Nature.
[31] Simon A. Wilde,et al. Evidence from detrital zircons for the existence of continental crust and oceans on the Earth 4.4 Gyr ago , 2001, Nature.
[32] D. Cole,et al. Equilibrium Oxygen, Hydrogen and Carbon Isotope Fractionation Factors Applicable to Geologic Systems , 2001 .
[33] Paul D. Asimow,et al. Algorithmic modifications extending MELTS to calculate subsolidus phase relations , 1998 .
[34] M. Kohn,et al. Obtaining equilibrium oxygen isotope fractionations from rocks: theory and examples , 1998 .
[35] M. Kohn,et al. The rapid heating, defocused beam technique: a CO2-laser-based method for highly precise and accurate determination of δ18O values of quartz , 1998 .
[36] J. Valley,et al. Hydrothermal alteration of oxygen isotope ratios in quartz phenocrysts, Kidd Creek mine, Ontario: Magmatic values are preserved in zircon , 1997 .
[37] D. Cherniak,et al. OXYGEN DIFFUSION IN ZIRCON , 1997 .
[38] R. Clayton,et al. Oxygen isotope fractionations in muscovite, phlogopite, and rutile , 1996 .
[39] S. Epstein,et al. Oxygen isotope partitioning between rhyolitic glass/melt and CO2: An experimental study at 550–950°C and 1 bar , 1996 .
[40] E. Watson. Dissolution, growth and survival of zircons during crustal fusion: kinetic principals, geological models and implications for isotopic inheritance , 1996 .
[41] C. Onasch,et al. Disequilibrium partitioning of oxygen isotopes associated with sector zoning in quartz , 1995 .
[42] E. Watson,et al. A simple model for sector zoning in slowly grown crystals: Implications for growth rate and lattice diffusion, with emphasis on accessory minerals in crustal rocks , 1995 .
[43] M. Kohn,et al. UWG-2, a garnet standard for oxygen isotope ratios: Strategies for high precision and accuracy with laser heating , 1995 .
[44] Mark S. Ghiorso,et al. Chemical mass transfer in magmatic processes IV. A revised and internally consistent thermodynamic model for the interpolation and extrapolation of liquid-solid equilibria in magmatic systems at elevated temperatures and pressures , 1995 .
[45] S. Epstein,et al. Experimental study of ^(18)O/^(16)O partitioning between crystalline albite, albitic glass, and CO_2 gas , 1994 .
[46] C. Manning. The solubility of quartz in H2O in the lower crust and upper mantle , 1994 .
[47] Z. Sharp,et al. Quartz-calcite oxygen isotope thermometry: A calibration based on natural isotopic variations , 1994 .
[48] J. Chiarenzelli,et al. Oxygen isotope geochemistry of zircon , 1994 .
[49] A. Matthews. Oxygen isotope geothermometers for metamorphic rocks , 1994 .
[50] S. Hoernes,et al. Oxygen isotope thermometry based on a refined increment method and its application to granulite-grade rocks from Sri Lanka , 1994 .
[51] Yong‐Fei Zheng. “Calculation of oxygen isotope fractionation in anhydrous silicate minerals.” Geochimica et Cosmochimica Acta , 1993 .
[52] J. Eiler,et al. A new look at stable isotope thermometry , 1993 .
[53] Zheng Yong-fei,et al. Calculation of oxygen isotope fractionation in anhydrous silicate minerals , 1993 .
[54] H. Chiba. Oxygen isotope fractionations involving diopside, forsterite, magnetite, and calcite: Application to geothermometry : , , and (1989) Goechim. Cosmochim. Acta 53 , 2985-2995 , 1991 .
[55] Zheng Yong-fei,et al. Calculation of oxygen isotope fractionation in metal oxides , 1991 .
[56] R. Yund,et al. Oxygen diffusion in quartz: Dependence on temperature and water fugacity , 1991 .
[57] S. Epstein,et al. An experimental study of oxygen isotope partitioning between silica glass and CO_2 vapor , 1991 .
[58] M. Carroll,et al. Experimental Phase Relations in the System Tonalite-Peridotite-H2O at 15 kb; Implications for Assimilation and Differentiation Processes near the Crust-Mantle Boundary , 1989 .
[59] J. Smyth. Electrostatic characterization of oxygen sites in minerals , 1989 .
[60] R. Clayton,et al. Oxygen isotope fractionation in quartz, albite, anorthite and calcite , 1989 .
[61] H. Taylor,et al. Igneous rocks; I, Processes of isotopic fractionation and isotope systematics , 1986 .
[62] T. M. Harrison,et al. Zircon saturation revisited: temperature and composition effects in a variety of crustal magma types , 1983 .
[63] R. Clayton,et al. Oxygen isotope fractionation between zoisite and water , 1983 .
[64] R. Clayton,et al. Oxygen isotope fractionations involving pyroxenes: The calibration of mineral-pair geothermometers , 1983 .
[65] Susan Werner Kieffer,et al. Thermodynamics and lattice vibrations of minerals: 5. Applications to phase equilibria, isotopic fractionation, and high‐pressure thermodynamic properties , 1982 .
[66] P. Deines,et al. A direct determination of the oxygen isotope fractionation between quartz and magnetite at 600 and 800°C and 5 kbar , 1981 .
[67] R. Clayton,et al. Oxygen isotopic fractionation in the system quartz-albite-anorthite-water , 1979 .
[68] W. Hildreth. The Bishop Tuff: Evidence for the origin of compositional zonation in silicic magma chambers , 1979 .
[69] W. E. Elston,et al. Ash-flow tuffs , 1979 .
[70] R. Clayton,et al. Mechanisms of hydrothermal crystallization of quartz at 250°C and 15 kbar , 1978 .
[71] L. Maitre. The Chemical Variability of some Common Igneous Rocks , 1976 .
[72] Y. Bottinga,et al. Comments on oxygen isotope geothermometry , 1973 .
[73] R. Clayton,et al. Oxygen isotope exchange between quartz and water , 1972 .
[74] H. Taylor. The oxygen isotope geochemistry of igneous rocks , 1968 .
[75] G. Garlick. Oxygen isotope fractionation in igneous rocks , 1966 .
[76] S. Epstein,et al. Relationship Between O18/O16 Ratios in Coexisting Minerals of Igneous and Metamorphic Rocks Part 2. Application to Petrologic Problems , 1962 .
[77] S. Epstein,et al. Relationship Between O18/O16 Ratios in Coexisting Minerals of Igneous and Metamorphic Rocks , 1962 .
[78] J. Overbeek,et al. THE SOLUBILITY OF QUARTZ , 1960 .