Reinhard Andrew A, Inglis Jeremy D, Singleton Michael J, Kara Azim H, Steiner Robert E, LaMont Stephen P
Nuclear and Radiochemistry Group, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, United States.
Environmental Isotope Systems Group, Lawrence Livermore National Laboratory, Livermore, California 94550, United States.
Anal Chem. 2024 May 14;96(19):7585-7593. doi: 10.1021/acs.analchem.4c00471. Epub 2024 Apr 30.
Uranium isotopic composition can provide valuable information about the history and provenance of a nuclear material; therefore, uranium isotopic analyses are frequently made in the nuclear forensics, safeguards, and environmental monitoring communities. These measurements have always presented challenges due to the extreme variability in the relative abundance between the major (U, U) and minor (U, U, U) isotopes of uranium. The recently developed ATONA (Atto- to Nano-Amp) amplification system paired with Faraday cup detectors has a large dynamic range and low noise floor making it ideal for measuring uranium isotopic ratios in materials of both natural and anthropogenic origin. A wide variety of certified reference materials were analyzed to investigate the utility of the ATONA amplification system for determining uranium isotopic composition in samples ranging from depleted to highly enriched. The ATONA amplifiers provide nearly an order of magnitude improvement in external reproducibility over 10 Ω amplifiers when measuring the minor U/U ratio in isotopically natural and depleted samples and when paired with a secondary electron multiplier can measure very low relative abundance uranium isotopes (i.e., U).
铀同位素组成能够提供有关核材料历史和来源的宝贵信息;因此,铀同位素分析在核取证、保障监督及环境监测领域经常进行。由于铀的主要同位素(U、U)和次要同位素(U、U、U)之间相对丰度的极端变异性,这些测量一直面临挑战。最近开发的ATONA(阿托至纳安)放大系统与法拉第杯探测器相结合,具有大动态范围和低本底噪声,使其非常适合测量天然和人为来源材料中的铀同位素比率。分析了多种经过认证的参考材料,以研究ATONA放大系统在确定从贫化到高度富集的样品中铀同位素组成方面的效用。在测量同位素天然和贫化样品中的次要U/U比率时,与10Ω放大器相比,ATONA放大器在外部重现性方面提供了近一个数量级的提升,并且与二次电子倍增器配合使用时能够测量极低相对丰度的铀同位素(即U)。