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PHOTOPEAK EFFICIENCY RESPONSE FUNCTION OF AN UNDERWATER GAMMA-RAY NaI(Tl) DETECTOR USING MCNP-X

机译:使用MCNP-X的水下伽马射线NAI(TL)检测器的Photopak效率响应功能

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This work presents a study to calculate the response function of a 1.5"× 1" NaI(Tl) scintillation detector when it is used in the marine environment in the energy range from 20 keV to 662 keV. The method takes into account both the scattering of photons in the water and the detection mechanism of the detector. In addition, the calculation of the response function of the whole system is essential for suppressing the background of the measurement and for estimating the concentration of the involved radionuclides, especially given the greater probability of primary gamma photons undergoing multiple scattering events before they interact with the detector. The experimental photopeak efficiency measurements for point sources were compared with the simulated results under the same conditions of the experimental setup to validate the simulation of the detector. Monte Carlo simulations were performed using the MCNP-X code for the investigation of gamma-ray absorption in water in different brines. The energy resolution curve was used to improve the response of the mathematical simulation of the detector. The detector's simulation was based on information obtained from the gammagraphy technique. Both dimensions and materials were used for the calculation with the MCNP-X code. The photopeak efficiency of a NaI(Tl) detector for different radionuclides in the aquatic environment with different salinities was calculated.
机译:这项工作提出了一种研究,以计算1.5“×1”Nai(TL)闪烁探测器的响应功能,当它在20kev到662 keV的能量范围内的海洋环境中使用时。该方法考虑了水中光子的散射和检测器的检测机构。此外,整个系统的响应功能的计算对于抑制测量背景并估计所涉及的放射性核素的浓度是必不可少的,特别是鉴于在它们与之交互之前经历多个散射事件的原发性伽马光子的概率更大的概率探测器。将点源的实验性Photopak效率测量与模拟结果进行比较,在实验设置的相同条件下,以验证检测器的模拟。使用MCNP-X码进行蒙特卡罗模拟,用于调查不同盐水中水中的伽马射线吸收。能量分辨率曲线用于改善检测器的数学模拟的响应。检测器的仿真基于从γ技术获得的信息。使用MCNP-X代码来计算两种尺寸和材料。计算了不同盐度水生环境中不同放射性核素的Nai(TL)检测器的Photopak效率。

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