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Assessing scattering effects in annular radioisotope excited XRF

机译:评估环形放射性同位素激发XRF中的散射效应

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摘要

Rayleigh and Compton scattered radiation is used in various correction procedures for quantitative x-ray fluorescence analysis. However, the information derived from the measured scatter peaks is altered by several phenomena in the case of annular radioisotope excitation, causing the calculated results to deviate, often significantly, from the expected values. In this work, we assessed the main sources of inaccuracy when using measured scatter intensities. Monte Carlo simulation was used to trace the radiation transport in the geometric arrangement source-sample-collimator-detector and to estimate the contribution of different effects to the measured Rayleigh and Compton scatter peaks. The information obtained in this way was used to extend the IAEA-QXAS standardless fundamental parameter approach to the case of annular radioisotope excitation and to formulate a method to correct for spurious fluorescent peaks appearing in blank measurements. Copyright (C) 2004 John Wiley Sons, Ltd.
机译:瑞利和康普顿散射辐射在各种校正程序中用于定量X射线荧光分析。但是,在环形放射性同位素激发的情况下,从测量的散射峰获得的信息会因多种现象而改变,从而导致计算的结果通常与预期值大相径庭。在这项工作中,我们评估了使用测量的散射强度时的主要误差来源。蒙特卡罗模拟用于追踪几何排列源-样本-准直器-探测器中的辐射传输,并估计不同效应对测得的瑞利和康普顿散射峰的贡献。以这种方式获得的信息用于将IAEA-QXAS无标准基本参数方法扩展到环形放射性同位素激发的情况,并制定一种方法来校正空白测量中出现的虚假荧光峰。版权所有(C)2004 John Wiley Sons,Ltd.

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