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Study of the influence of the liquid scintillator in the Compton efficiency tracing method

机译:液体闪烁体在康普顿效率跟踪方法中的影响研究

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The principle of the Compton source efficiency tracing method (CET) in liquid scintillation counting (LSC) is to use, as a tracer, a Compton electron source temporarily created inside the source being measured. The tracer source and the source to measure have thus exactly the same chemical composition. A main advantage anticipated for this measurement method is its low sensitivity to the kB factor and insensitivity to the chemical composition and quenching of the source, which would obviate the necessity to develop a reference liquid scintillator cocktail in the framework of an international reference system for the measurement of pure-beta emitters by LSC. We took the opportunity of a tritiated water international activity measurement in comparison to prepare LS sources using various commercial liquid scintillator cocktails. Tritium is assumed to be a good candidate for testing the LSC activity measurement method, as the detection efficiency is rather low and the effect of the ionization quenching parameter, kB, on the detection efficiency calculation by the TDCR method is known to be important. The sources were measured using a TDCR counter equipped with a Compton spectrometer in order to apply the CET method. The measurements are analyzed using both the TDCR method and CET method in order to deduce the optimal calculation parameters. The detection efficiency range covered by these experiments is from 0.4 to 0.6, allowing a good test of the validity of the physical assumptions included in the calculation model. The paper will conclude on the advantages and drawbacks of using this CET method in the framework of an international reference system for low-energy pure-beta radionuclides.
机译:康顿源效率跟踪方法(CET)在液体闪烁计数(LSC)中的原理是用作示踪剂的康普顿电子源,临时在测量源内部临时创建的。因此,示踪源和源极为相同的化学成分。对该测量方法预期的主要优点是对KB因子的敏感性低,并且对源的化学成分和淬火的不敏感性,这将消除在国际参考系统的框架中开发参考液体闪烁体鸡尾酒的必要性通过LSC测量纯-β发射器。我们在使用各种商业液体闪烁体鸡尾酒的情况下掌握了氚化的水国际活动测量。假设氚是测试LSC活性测量方法的良好候选者,因为已知检测效率相当低,并且电离淬火参数Kb对TDCR方法的检测效率计算的影响是重要的。使用配备有康普顿光谱仪的TDCR计数器来测量来源,以应用CET方法。使用TDCR方法和CET方法分析测量值,以便推断出最佳计算参数。这些实验覆盖的检测效率范围为0.4至0.6,允许对计算模型中包括的物理假设的有效性进行良好的测试。本文将终结在利​​用低能量纯-β放射性核素的国际参考系统框架中使用这种CET方法的优点和缺点。

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