首页> 外文期刊>Nuclear Technology >NEW NUMERICAL ALGORITHM METHOD CONSIDERING THE SELF-ABSORPTION OF THE SPHERICAL RADIOACTIVE SOURCES MATRIX TO CALIBRATE A SYSTEM OF TWO NAI GAMMA DETECTORS
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NEW NUMERICAL ALGORITHM METHOD CONSIDERING THE SELF-ABSORPTION OF THE SPHERICAL RADIOACTIVE SOURCES MATRIX TO CALIBRATE A SYSTEM OF TWO NAI GAMMA DETECTORS

机译:考虑球状放射源矩阵自吸收的新型数值算法,用于校正两个奈玛探测器的系统

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摘要

In this work, the full energy peak efficiency for a system of two NaI gamma detectors using spherical radioactive sources is evaluated by applying a new numerical algorithm method, since experimental calibration using volumetric sources is a dominant problem of practical gamma spectrometry. The new method is based on the efficiency transfer technique, where the effective solid angles, the effect of self-absorption of the source matrix, and absorption by the source container and the detector housing materials on detector efficiency are considered. The experimental calibration procedure was done using radioactive spherical sources containing aqueous ~(152)Eu radionuclide, which produces photons with a wide range of energies from 121.78 up to 1408.03 keV. The comparison shows good agreement between the measured and calculated efficiencies for the detector using spherical sources.
机译:在这项工作中,通过应用一种新的数值算法方法,评估了两个使用球形放射源的两个NaI伽马探测器的系统的全部能量峰值效率,因为使用体积源进行实验校准是实际伽马光谱法的主要问题。新方法基于效率传递技术,其中考虑了有效立体角,源矩阵的自吸收效应以及源容器和探测器外壳材料对探测器效率的吸收。实验校准程序是使用含有〜(152)Eu放射性核素水溶液的放射性球形源完成的,该放射性球形源产生的光子具有从121.78到1408.03 keV的宽范围能量。比较结果表明,使用球形光源的探测器的测量效率与计算效率之间具有良好的一致性。

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