4.7 Article

U-Pb dating of zircon in the Bishop Tuff at the millennial scale

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GEOLOGY
卷 35, 期 12, 页码 1123-1126

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GEOLOGICAL SOC AMER, INC
DOI: 10.1130/G24017A.1

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zircon; U-Pb geochronology; Bishop Tuff; magma residence; disequilibrium

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Zircon from the Bishop Tuff (eastern California) was dated by the U-Pb isotope dilution thermal ionization mass spectrometry (ID-TIMS) method to evaluate time scales of magmatic evolution and applicability of the method to rocks younger than 1 Ma. The Pb-206/U-238 dates from 17 of 19 grains are equivalent with a weighted mean of 767.1 +/- 0.9 ka that overlaps with the published 40Ar/39Ar sanidine age, requiring that most zircon crystallized immediately before eruption. Dates from two grains that are 6 and 12 k.y. older indicate minimum times that a small portion of the grains resided in the magma. These findings are consistent with chemical zoning patterns in zircon that suggest a relatively simple crystallization history, yet contrast with previous results of ion microprobe dating of zircon that show 50-80 k.y. of magma residence. The weighted mean Pb-207/U-235 date is similar to 52 k.y. older than the Pb-206/U-238 date, a difference that is attributed to excess Pb-207 from initial Pa/U disequilibrium. The results demonstrate that high-precision ID-TIMS geochronology can resolve magma chamber dynamics of <1 Ma silicic eruptions at the millennial scale.

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