Sub-epsilon natural <sup>234</sup>U/<sup>238</sup>U measurements refine the <sup>234</sup>U half-life and U-Th geochronology.

Hu, Hsun-Ming; Shen, Chuan-Chou; Cheng, Hai; Woodhead, Jon D; Edwards, R Lawrence; Zhao, Jian-Xin; Huang, Chun-Yuan; Lu, Pei-Yun et al. · Sci Adv · 2025

basic_science · Level V

Where this comes from

Abstract

<sup>234</sup>U/<sup>238</sup>U ratios are used across various fields in Earth science, but their measurement is highly challenging due to the four orders of magnitude difference in isotope abundance between <sup>234</sup>U and <sup>238</sup>U. Here, we develop refined techniques for accurately and precisely measuring <sup>234</sup>U/<sup>238</sup>U using multicollector inductively coupled plasma mass spectrometry, providing a reproducibility of ±0.08 per mil (2σ). At this sub-epsilon precision level, the half-life of <sup>234</sup>U is refined to 245,670 ± 260 years. For U-Th geochronology, systematic uncertainties from decay constants largely cancel, effectively reducing the uncertainty in the <sup>234</sup>U half-life to ~±25 years. This improved measurement precision consequently reduces total 2σ age uncertainties to ±3 thousand years (kyr) at ~600 thousand years ago (ka) and ±6 kyr at ~700 ka, a substantial improvement over earlier methods with uncertainties of tens of thousands of years.