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Seeing is believing: Visualization of He distribution in zircon and implications for thermal history reconstruction on single crystals

机译:眼见为实:锆石中He分布的可视化及其对单晶热历史重建的影响

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摘要

Zircon (U-Th)/He thermochronometry is an established radiometric dating technique used to place temporal constraints on a range of thermally sensitive geological events, such as crustal exhumation, volcanism, meteorite impact, and ore genesis. Isotopic, crystallographic, and/or mineralogical heterogeneities within analyzed grains can result in dispersed or anomalous (U-Th)/He ages. Understanding the effect of these grain-scale phenomena on the distribution of He in analyzed minerals should lead to improvements in data interpretation. We combine laser ablation microsampling and noble gas and trace element mass spectrometry to provide the first two-dimensional, grain-scale zircon He “maps” and quantify intragrain He distribution. These maps illustrate the complexity of intracrystalline He distribution in natural zircon and, combined with a correlated quantification of parent nuclide (U and Th) distribution, provide an opportunity to assess a number of crystal chemistry processes that can generate anomalous zircon (U-Th)/He ages. The technique provides new insights into fluid inclusions as potential traps of radiogenic He and confirms the effect of heterogeneity in parent-daughter isotope abundances and metamictization on (U-Th)/He systematics. Finally, we present a new inversion method where the He, U, and Th mapping data can be used to constrain the high- and low-temperature history of a single zircon crystal.
机译:锆石(U-Th)/ He热计时法是一种成熟的放射性测年技术,用于对一系列热敏感的地质事件(例如地壳发掘,火山爆发,陨石撞击和矿石成因)施加时间限制。被分析晶粒内的同位素,晶体学和/或矿物学异质性可能导致散布或反常(U-Th)/ He年龄。理解这些晶粒度现象对He在分析的矿物中的分布的影响将有助于改善数据解释。我们将激光烧蚀微量进样与稀有气体和微量元素质谱相结合,以提供第一个二维的,晶粒度大小的锆石He“图”,并量化晶粒内He的分布。这些图说明了天然锆石中晶内He分布的复杂性,并与母体核素(U和Th)分布的相关定量结合,为评估可产生异常锆石(U-Th)的许多晶体化学过程提供了机会/他老了。该技术提供了对流体包裹体的新见解,这些流体包裹体是放射源He的潜在陷阱,并证实了母子同位素丰度和成矿作用对(U-Th)/ He系统的异质性影响。最后,我们提出了一种新的反演方法,其中He,U和Th映射数据可用于约束单个锆石晶体的高温和低温历史。

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