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A general method for optimizing the parameter of α/β discrimination in liquid scintillation counting

机译:优化液体闪烁计数中α/β鉴别参数的一般方法

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摘要

In the application of liquid scintillation counting (LSC), the α/β discrimination is carried out with the function of pulse shape analysis (PSA), which requires the setting of the optimum PSA level. The optimum PSA is usually determined by the generation of cross-over plots (referred as Conventional Method), whereby a pair of pure α and β emitters is essential. However, in some cases, a pure α or β emitter is not available. In order to deal with this problem, we have developed a new approach (referred as Present Method) to set the optimum PSA by measuring the sample itself of mixed α/β emitters. The results from Present Method are in good agreement with those from Conventional Method when a pair of pure α and β emitters is available. Besides the obvious advantage that Present Method can be applied no matter whether a pure α emitter or a pure β emitter is available or not, Present Method has another important advantage that it is not necessary to prepare the quench curves for the measurement of samples with different quench levels. Therefore, Present Method is a general method for optimizing the parameter of α/β discrimination in LSC. In addition, the application of Present Method can be broadened by combining the method with α spectrometry...
机译:在液体闪烁计数(LSC)的应用中,通过脉冲形状分析(PSA)功能进行α/β判别,这需要设置最佳PSA水平。最佳PSA通常由交叉图的生成(称为“常规方法”)确定,因此一对纯α和β发射体必不可少。但是,在某些情况下,纯α或β发射极不可用。为了解决这个问题,我们开发了一种新方法(称为“当前方法”),通过测量混合的α/β发射体的样品本身来设置最佳PSA。当有一对纯α和β发射体时,本方法的结果与常规方法的结果非常吻合。除了无论使用纯α发射器还是纯β发射器都可以使用Present方法的明显优点之外,Present Method的另一个重要优点是无需准备淬灭曲线来测量不同样品淬灭水平。因此,本方法是优化LSC中α/β鉴别参数的通用方法。此外,将本方法与α光谱法结合使用可以扩大本方法的应用范围...

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