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Laser Ablation – Accelerator Mass Spectrometry:a novel approach for rapid radiocarbon analyses of carbonate archives at high spatial resolution

机译:激光烧蚀–加速器质谱:一种在高空间分辨率下快速分析碳酸盐档案的放射性碳的新颖方法

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摘要

A new instrumental setup, combining laser ablation (LA) with accelerator mass spectrometry (AMS), has been investigated for the online radiocarbon (C) analysis of carbonate records. Samples were placed in an in-house designed LA-cell and CO2 gas was produced by ablation using a 193 nm ArF excimer laser. The C/C abundance ratio of the gas was then analyzed by gas ion source AMS. This configuration allows flexible and time resolved acquisition of C profiles in contrast to conventional measurements, where only the bulk composition of discrete samples can be obtained. Three different measurement modes, i.e. discrete layer analysis, survey scans and precision scans, were investigated and compared using a stalagmite sample and, subsequently, applied to terrestrial and marine carbonates. Depending on the measurement mode, a precision of typically 1-5 % combined with a spatial resolution of 100 µm can be obtained. Prominent C features, such as the atomic bomb C peak, can be resolved by scanning several cm of a sample within one hour. Stalagmite, deep-sea coral and mollusk shell samples yielded comparable signal intensities, which again were comparable to those of conventional gas measurements. The novel LA-AMS setup allowed rapid scans on a variety of sample materials with high spatial resolution.
机译:研究了一种结合激光烧蚀(LA)和加速器质谱(AMS)的新仪器设置,用于碳酸盐记录的在线放射性碳(C)分析。将样品放置在内部设计的LA电池中,并使用193 nm ArF准分子激光烧蚀产生CO2气体。然后通过气体离子源AMS分析气体的C / C丰度比。与常规测量相反,该配置允许灵活且时间分辨地采集C曲线,而常规测量只能获取离散样品的大部分成分。使用石笋样品研究并比较了三种不同的测量模式,即离散层分析,勘测扫描和精确扫描,随后将其应用于陆上和海相碳酸盐岩。根据测量模式,可以获得通常为1-5%的精度以及100 µm的空间分辨率。突出的C特征(例如原子弹C峰)可以在1小时内扫描几厘米的样品来解决。石笋,深海珊瑚和软体动物壳样品产生的信号强度相当,这再次与常规气体测量结果相当。新颖的LA-AMS设置允许以高空间分辨率快速扫描各种样品材料。

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