Arenillas Pablo, Cassette Philippe
Laboratorio de Metrología de Radioisótopos, Comisión Nacional de Energía Atómica, Argentina.
Appl Radiat Isot. 2006 Oct-Nov;64(10-11):1500-4. doi: 10.1016/j.apradiso.2006.02.091. Epub 2006 Aug 4.
During the last two years, a triple-to-double coincidence ratio (TDCR) system was assembled and adjusted at the CNEA-LMR, Argentina. The new counting system will add complementary capabilities to the absolute measurements section of the CNEA-LMR. This work describes its implementation and validation. Several checks and a set of beta-emitting standard solutions were used in order to perform the validation experiments. In preliminary measurements, a 3H LNHB solution with reference activity concentration of (119.7+/-0.9) kBq/g on 11 November 2003 was used. The CNEA-LMR TDCR counter gave, at the same reference date, an activity concentration of (120+/-1) kBq/g. Results and improvements are presented in detail. Concerning the asymmetry of the system, the quantum efficiency of the three photomultiplier tubes was studied for different operating conditions of the focusing voltage. The counter also includes an automatic system to change the efficiency by defocusing the photomultipliers and on the other hand, it was coupled to a HPGe detector to also measure beta-gamma coincidences.
在过去两年间,阿根廷国家原子能委员会轻水反应堆(CNEA-LMR)组装并调试了一个三重到双重符合比率(TDCR)系统。这个新的计数系统将为CNEA-LMR的绝对测量部分增添补充功能。本文描述了其实施过程及验证情况。为进行验证实验,采用了多项检查以及一组β发射标准溶液。在初步测量中,使用了2003年11月11日参考活度浓度为(119.7±0.9) kBq/g的3H LNHB溶液。在同一参考日期,CNEA-LMR的TDCR计数器给出的活度浓度为(120±1) kBq/g。详细介绍了结果及改进情况。关于系统的不对称性,研究了在聚焦电压的不同工作条件下三个光电倍增管的量子效率。该计数器还包括一个通过使光电倍增管散焦来改变效率的自动系统,另一方面,它与一个HPGe探测器相连,也用于测量β-γ符合。