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A trapezoid approach for the experimental total-to-peak efficiency curve used in the determination of true coincidence summing correction factors in a HPGe detector

机译:梯形方法用于实验总峰效率曲线,用于确定HPGe检测器中的真实重合和校正因子

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In this work, a simple method for true coincidence correction is suggested for a voluminous source measured in close detection geometry for a HPGe detector. TrueCoinc program based on Sudar's algorithm was used to determine true coincidence summing correction (TCS) factors by using full energy peak (FEP) efficiency, and total-to-peak (TTP) efficiency curves in which experimental efficiencies are obtained from almost coincident-free radionuclides such as ~(54)Mn, ~(57)Co, ~(65)Zn, ~(109)Cd, ~(137)Cs and ~(241)Am. In order to calculate TTP efficiency curve three different approaches were tested. One of them is new and here called trapezoid approach which was used successfully in determining total count of spectrum for the TTP efficiency curves. According to different TTP determination methods, the changes in true coincidence factors are observed. The FEP efficiency curves are also established for a cylindrical source, Then, TCS factors were determined for the particular peaks of daughters of ~(226)Ra, ~(238)U, and ~(232)Th using the suggested method. Those activities measured from some certified reference materials such as IAEA RGU-1 and RGTh-1 are used to validate the present TCS correction procedure.
机译:在这项工作中,提出了一种用于HPGe检测器的以紧密检测几何形状测量的大量源的真正符合校正的简单方法。使用基于Sudar算法的TrueCoinc程序,通过使用全能峰(FEP)效率和总峰(TTP)效率曲线来确定真正的巧合和校正(TCS)因子,其中从几乎没有巧合的情况获得实验效率放射性核素,例如〜(54)Mn,〜(57)Co,〜(65)Zn,〜(109)Cd,〜(137)Cs和〜(241)Am。为了计算TTP效率曲线,测试了三种不同的方法。其中之一是新方法,这里称为梯形方法,已成功用于确定TTP效率曲线的频谱总数。根据不同的TTP确定方法,可以观察到真实符合因子的变化。还建立了圆柱源的FEP效率曲线,然后使用建议的方法确定〜(226)Ra,〜(238)U和〜(232)Th子体的特定峰的TCS因​​子。从某些经认证的参考材料(例如IAEA RGU-1和RGTh-1)测量的那些活动用于验证当前的TCS校正程序。

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