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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >A practical method for determining γ-ray full-energy peak efficiency considering coincidence-summing and self-absorption corrections for the measurement of environmental samples after the Fukushima reactor accident
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A practical method for determining γ-ray full-energy peak efficiency considering coincidence-summing and self-absorption corrections for the measurement of environmental samples after the Fukushima reactor accident

机译:考虑重合和自吸收校正的福岛反应堆事故后环境样品测量中确定γ射线全能峰值效率的实用方法

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摘要

A method for determining the γ-ray full-energy peak efficiency at positions close to three Ge detectors and at the well port of a well-type detector was developed for measuring environmental volume samples containing ~(137)Cs, ~(134)Cs and ~(40)K. The efficiency was estimated by considering two correction factors: coincidence-summing and self-absorption corrections. The coincidence-summing correction for a cascade transition nuclide was estimated by an experimental method involving measuring a sample at the far and close positions of a detector. The derived coincidence-summing correction factors were compared with those of analytical and Monte Carlo simulation methods and good agreements were obtained. Differences in the matrix of the calibration source and the environmental sample resulted in an increase or decrease of the full-energy peak counts due to the self-absorption of γ-rays in the sample. The correction factor was derived as a function of the densities of several matrix materials. The present method was applied to the measurement of environmental samples and also low-level radioactivity measurements of water samples using the well-type detector.
机译:开发了一种确定靠近三个Ge探测器的位置和井式探测器的井口处的γ射线全能峰值效率的方法,用于测量包含〜(137)Cs,〜(134)Cs的环境体积样本和〜(40)K。通过考虑两个校正因子来估计效率:重合和校正和自吸收校正。级联过渡核素的重合和校正是通过实验方法估算的,该方法包括在检测器的远近位置测量样品。将推导的重合和校正因子与分析和蒙特卡罗模拟方法相比较,并获得良好的一致性。由于样品中γ射线的自吸收,校准源和环境样品的基质中的差异导致全能峰计数的增加或减少。根据几种基质材料的密度得出校正因子。本方法不仅适用于环境样品的测量,还适用于使用井型检测器的水样品的低放射性测量。

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