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Evaluation of the accidental coincidence counting rates in TDCR counting

机译:TDCR计数中意外重合计数率的评价

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This paper presents analytical and experimental methods to evaluate the accidental coincidence counting rates in a Triple-to-Double Coincidence Ratio (TDCR) Liquid Scintillation (LS) measurement. The experimental method we propose is based on the analysis of the distribution of the time delays between the first detected events in each photomultiplier tube. The underlying assumption is that events separated by several microseconds in time are not correlated, thus the accidental coincidence counting rates could be determined from the time interval distribution of uncorrelated events. The analytical evaluation of the accidental coincidence counting rates is based on the conditional probabilities for the occurrence of uncorrelated events within the same coincidence resolving time. The analytical and experimental evaluations of the rate of accidental coincidences give consistent results for TDCR measurements of ~3H, ~(55)Fe and ~(14)C. The two methods were used to evaluate corrections for accidental coincidences for Monte Carlo (MC) generated list-mode files of ~3H measurements with increasing activities. The counting rates, corrected for accidental coincidences using the analytical method, are within 0.29% of the MC reference up to 100 kBq and the corrected, using the experimental method, are within 0.21% up to 200 kBq.
机译:本文介绍了分析和实验方法,以评价三重双重合比(TDCR)液体闪烁(LS)测量中的意外重合计数速率。我们提出的实验方法基于分析每个光电倍增管中的第一检测到的事件之间的时间延迟的分布。底层假设是在时间间隔几微秒分隔的事件不相关,因此可以从不相关事件的时间间隔分布来确定意外巧合计数率。意外巧合计数率的分析评估基于在相同巧合的时间内发生不相关事件的条件概率。意外重合速率的分析和实验评估为TDCR测量的〜3H,〜(55)Fe和〜(14)c提供一致的结果。通过增加的活动,这两种方法用于评估蒙特卡罗(MC)生成的列表模式文件的意外巧合。使用分析方法校正意外重合的计数速率在MC参考的0.29%以内,最高可达100 kBQ,使用实验方法校正,在0.21%至200 kBq之内。

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