Evaluation of Duluth Complex anorthositic series (AS3) zircon as a U-Pb geochronological standard: new high-precision isotope dilution thermal ionization mass spectrometry results
暂无分享,去创建一个
[1] Y. Amelin,et al. Precise geochronology of phoscorites and carbonatites: The critical role of U-series disequilibrium in age interpretations , 2002 .
[2] S. Bowring,et al. U-Pb zircon and titanite systematics of the Fish Canyon Tuff: an assessment of high-precision U-Pb geochronology and its application to young volcanic rocks , 2001 .
[3] K. Mezger,et al. Calibration of the Lutetium-Hafnium Clock , 2001, Science.
[4] K. Ludwig. Decay constant errors in U–Pb concordia-intercept ages , 2000 .
[5] C. Bacon,et al. Late Pleistocene granodiorite beneath Crater Lake caldera, Oregon, dated by ion microprobe , 2000 .
[6] W. McDonough,et al. Precise elemental and isotope ratio determination by simultaneous solution nebulization and laser ablation-ICP-MS: application to U-Pb geochronology , 2000 .
[7] P. Renne,et al. Absolute Ages Aren't Exactly , 1998, Science.
[8] K. Ludwig. On the Treatment of Concordant Uranium-Lead Ages , 1998 .
[9] I. Butler,et al. UV Laser Ablation ICP-MS: Some Applications in the Earth Sciences , 1997 .
[10] T. Harrison,et al. Prolonged residence times for the youngest rhyolites associated with Long Valley Caldera:230Th—238U ion microprobe dating of young zircons , 1997 .
[11] H. Gerstenberger,et al. A highly effective emitter substance for mass spectrometric Pb isotope ratio determinations , 1997 .
[12] D. Davis,et al. Geochronology of the North American Midcontinent rift in western Lake Superior and implications for its geodynamic evolution , 1997 .
[13] S. Weaver,et al. Ion microprobe dating of Paleozoic granitoids: Devonian magmatism in New Zealand and correlations with Australia and Antarctica , 1996 .
[14] W. Griffin,et al. THREE NATURAL ZIRCON STANDARDS FOR U‐TH‐PB, LU‐HF, TRACE ELEMENT AND REE ANALYSES , 1995 .
[15] J. D. Miller,et al. Precise U‐Pb ages of Duluth Complex and related mafic intrusions, northeastern Minnesota: Geochronological insights to physical, petrogenetic, paleomagnetic, and tectonomagmatic processes associated with the 1.1 Ga Midcontinent Rift System , 1993 .
[16] S. Nicholson,et al. Midcontinent rift volcanism in the Lake Superior Region: Sr, Nd, and Pb isotopic evidence for a mantle plume origin , 1990 .
[17] T. Krogh,et al. Improved accuracy of U-Pb zircon ages by the creation of more concordant systems using an air abrasion technique , 1982 .
[18] J. Kramers,et al. Approximation of terrestrial lead isotope evolution by a two-stage model , 1975 .
[19] T. Krogh. A low-contamination method for hydrothermal decomposition of zircon and extraction of U and Pb for isotopic age determinations , 1973 .
[20] G. Wasserburg,et al. The isotopic composition of lead in potassium feldspars from some 1.0-b.y. old North American igneous rocks , 1969 .
[21] L. Silver,et al. Evaluation of the decay constant of uranium 235 from lead isotope ratios , 1966 .
[22] A. Nier. The Isotopic Constitution of Uranium and the Half-Lives of the Uranium Isotopes. I , 1939 .
[23] P. Renne,et al. Call for an improved set of decay constants for geochronological use , 2001 .
[24] W. Compston,et al. Two Carboniferous Ages: A Comparison of Shrimp Zircon Dating with Conventional Zircon Ages and 40Ar/39Ar Analysis , 1995 .
[25] W. Berggren,et al. GEOCHRONOLOGY, TIME SCALES AND GLOBAL STRATIGRAPHIC CORRELATION , 1995 .
[26] K. Ludwig. Calculation of uncertainties of U-Pb isotope data , 1980 .
[27] A. H. Jaffey,et al. Precision Measurement of Half-Lives and Specific Activities of U-235 and U238 , 1971 .