Articles | Volume 6, issue 4
https://doi.org/10.5194/gchron-6-607-2024
https://doi.org/10.5194/gchron-6-607-2024
Short communication/technical note
 | 
25 Nov 2024
Short communication/technical note |  | 25 Nov 2024

Short communication: Nanoscale heterogeneity of U and Pb in baddeleyite from atom probe tomography – 238U series alpha recoil effects and U atom clustering

Steven Denyszyn, Donald W. Davis, and Denis Fougerouse

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Cited articles

Amelin, Y. and Zaitsev, A. N.: Precise geochronology of phoscorites and carbonatites: The critical role of U-series disequilibrium in age interpretations, Geochim. Cosmochim. Ac., 66, 2399–2419, 2002. 
Casella, G. and Berger, R. L.: Statistical inference, 2nd edn., Duxbury Thompson Learning, 660 pp., ISBN 0495391875, 9780495391876, 2018. 
Cherniak, D. J. and Watson, E. B.: Diffusion in zircon, Rev. Mineral. Geochem., 53, 113–143, 2003. 
Darling, J. R., Moser, D. E., Barker, I. R., Tait, K. T., Chamberlain, K. R., Schmitt, A. K., and Hyde, B. C.: Variable microstructural response of baddeleyite to shock metamorphism in young basaltic shergottite NWA 5298 and improved U–Pb dating of Solar System events, Earth Planet. Sc. Lett., 444, 1–12, 2016. 
Davidson, A. and van Breemen, O.: Baddeleyite-zircon relationships in coronitic metagabbro, Grenville province, Ontario: Implications for geochronology, Contrib. Mineral. Petr. 100, 291–299, 1988. 
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Short summary
Decay of U to Pb in baddeleyite is used for dating mafic rocks, but some daughter Pb atoms can be ejected out of the crystal, resulting in ages that seem too young. Atom probe tomography was used to map U and Pb atoms in 3D within baddeleyite crystals and estimate the average distance that Pb atoms are displaced by recoil. This allows us to test the relationship between crystal size and apparent age. There is also evidence for clustering of U atoms, inviting more work on how this may occur.