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Monte Carlo simulation to positron emitter standardized by means of 4pibeta-gamma coincidence system--application to 22Na.

机译:通过4Pibeta-Gamma巧合系统标准化的正电子发射器蒙特卡罗模拟 - 应用于22NA。

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摘要

The present work describes the methodology for predicting the behavior of extrapolation curves obtained in radionuclide standardization by 4pibeta-gamma coincidence measurements, applied to (22)Na, developed at the Laboratorio de Metrologia Nuclear of IPEN-CNEN/SP (LMN-Nuclear Metrology Laboratory). The LMN system consists of a proportional counter (PC) in 4pi geometry coupled to a single or a pair of NaI(Tl) scintillation crystals. Two standardization techniques were used: the Sum-Peak and the Nuclear-Peak methods. The theoretical response functions of each detector have been calculated using the MCNPX Monte Carlo code. The code ESQUEMA, developed at LMN, has been used for calculating the extrapolation curve in the 4pibeta-gamma coincidence experiment. Modifications were performed in order to include response tables for positrons and coincidences with annihilation photons. From the calibration results it was possible to extract both the activity value and the positron emission probability per decay. The latter was compared with results from the literature.
机译:本作本作者描述了预测通过4pibeta-gamma重合测量的放射性核素标准化在放射性核素标准化中获得的外推曲线的行为,适用于Ipen-cnen / sp的Laboratorio De Metolologia核算(Lmn-Nuclemetolology实验室)的(22) )。 LMN系统由4PI几何形状中的比例计数器(PC)组成,耦合到单个或一对Nai(TL)闪烁晶体。使用了两种标准化技术:总和峰和核峰值方法。使用MCNPX Monte Carlo Code计算每个探测器的理论响应函数。在LMN开发的代码ESQuema已被用于计算4pibeta-gamma巧合实验中的外推曲线。进行修改,以包括用于积极的响应表和与湮灭光子的巧合。从校准结果,可以通过每个衰变提取活动值和正电子发射概率。后者与文献结果进行了比较。

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