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Digital coincidence counting for radionuclide standardization

机译:用于核素标准化的数字符合计数

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摘要

The 4 pi beta-gamma coincidence method for the absolute determination of nuclear disintegration rates has for decades been successfully applied to a variety of radionuclides, via the use of suites of dedicated analogue electronic modules. The high cost of procurement and maintenance of such systems, as well as the requirement for highly experienced technicians to perform the data collection have prompted the design of more flexible data collection techniques. Recent advances in digital signal acquisition technology have facilitated the possibility of storing pulse information from multiple detector systems along with a time stamp for each recorded event, allowing various radionuclide standardization techniques (based on the concept of 4 pi beta-gamma coincidence counting) to be implemented 'offline' via the use of dedicated software routines. This brief paper reviews the progress in the development of such 'digital coincidence counting' systems used in the field of radionuclide metrology and may be viewed as a companion article to other papers (in this issue) on primary methods for radionuclide standardization.
机译:几十年来,通过使用专用模拟电子模块套件,用于绝对确定核崩解速率的4 pibeta-γ巧合方法已成功地应用于各种放射性核素。采购和维护此类系统的高昂成本,以及对经验丰富的技术人员进行数据收集的要求,促使人们设计出更加灵活的数据收集技术。数字信号采集技术的最新进展促进了存储来自多个检测器系统的脉冲信息以及每个记录事件的时间戳的可能性,从而允许使用各种放射性核素标准化技术(基于4 pibeta-γ符合计数的概念)通过使用专用软件例程实现“离线”。这篇简短的文章回顾了放射性核素计量学领域中使用的“数字符合计数”系统的开发进展,并且可以被视为有关放射性核素标准化主要方法的其他论文(本期)的配套文章。

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