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基于蒙特卡罗方法的α放射源能谱测量模拟北大核心CSCD
引用本文:许阳阳,庹先国,石睿,郑洪龙,刘宇琦.基于蒙特卡罗方法的α放射源能谱测量模拟北大核心CSCD[J].强激光与粒子束,2017,29(4):044001-52.
作者姓名:许阳阳  庹先国  石睿  郑洪龙  刘宇琦
作者单位:1.西南科技大学 核废物与环境安全国防重点学科实验室, 四川 绵阳 621 01 0;
基金项目:国家自然科学基金项目;国家自然科学基金青年基金项目;四川省重点实验室开放基金项目
摘    要:运用蒙特卡罗方法建立PIPS-α谱仪的腔室模型,模拟谱仪对α面源(238Pu)的能谱测量,通过改变放射源与探头之间的距离,模拟不同条件下α粒子的射线能谱,同时,对不同探源距条件对α射线能谱的影响进行分析;另一方面,使用谱仪在不同探源距的情况下进行α能谱实验测量,获得不同条件下α射线能谱;最后,将模拟与实验的结果进行对比,分析实验测量结果与模拟结果的相对误差,并对模拟过程及模型参数进行校正,对校正后的模型进行实验验证,使其能够应用到其他α放射源的能谱测量中,并且使其可用于单能α粒子的能谱研究,研究结果也可为α能谱测量技术提供依据,为α能谱解谱技术提供数据支持。

关 键 词:PIPS-α谱仪  蒙特卡罗  高斯展宽  探测效率  相关系数  Key  words  PIPS-a  spectrometer  Monte  Carlo  method  Gaussian  broadening  detection  efficiency  correlation  coef-ficient
收稿时间:2016-09-29

Alpha radioactive source spectrum measurement simulationbased on Monte Carlo method
Institution:1.Fundamental Science on Nuclear Wastes and Environmental Safety Laboratory,Southwest University of Science and Technology,Mianyang 621010,China;2.College of Chemistry and Environment Engineering,Sichuan University of Science and Engineering,Zigong 643000,China;3.State Key Laboratory of Geohazard Prevention and Geoenvironment Protection,Chengdu University of Technology,Chengdu 610059,China
Abstract:In the disposal of nuclear waste, regulation and classification of transuranium elements, alpha radioactivity monitoring work in special places such as nuclear arsenal, we usually use the alpha energy spectrum measuring technique. Alpha energy spectrum measurement is one of the key measurements of nuclear radiation, which occupies an important position in the field of nuclear radiation monitoring. In order to accurately analyze the impact of different source-detector distance, vacuum degree, placement angle and other factors on alpha energy spectrum measurement, we used Monte Carlo method to simulate energy spectrum measurement, thus reduced experiment time and improved the accuracy. The Monte Carlo method was used to establish chamber model for the PIPS-alpha spectrometer, which, by changing the distance between a radiation source and detector, simulates the alpha energy spectrum. The simulation results are corrected according to the experimental results to improve the degree of agreement between experiment and simulation. Experiments show that the Monte Carlo model is accurate and can be used for simulating the impact of different source-detector-distance, vacuum degree, placement angle and other factors on alpha energy spectrum measurement. This method not can only be applied to other alpha energy spectrum measurement, but also be used in single energy spectrum research of alpha particles. The study is to provide a basis for the alpha spectrum measurement technology and data support for alpha spectrum technology.
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