首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Comparative study of Monte Carlo particle transport code PHITS and nuclear data processing code NJOY for recoil cross section spectra under neutron irradiation
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Comparative study of Monte Carlo particle transport code PHITS and nuclear data processing code NJOY for recoil cross section spectra under neutron irradiation

机译:中子辐照反冲截面谱的蒙特卡洛粒子传输码PHITS和核数据处理码NJOY的比较研究

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Because primary knock-on atoms (PKAs) create point defects and clusters in materials that are irradiated with neutrons, it is important to validate the calculations of recoil cross section spectra that are used to estimate radiation damage in materials. Here, the recoil cross section spectra of fission- and fusion-relevant materials were calculated using the Event Generator Mode (EGM) of the Particle and Heavy Ion Transport code System (PHITS) and also using the data processing code NJOY2012 with the nuclear data libraries TENDL2015, ENDF/BVII.1, and JEFF3.2. The heating number, which is the integral of the recoil cross section spectra, was also calculated using PHITS-EGM and compared with data extracted from the ACE files of TENDL2015, ENDF/BVII.1, and JENDL4.0. In general, only a small difference was found between the PKA spectra of PHITS + TENDL2015 and NJOY + TENDL2015. From analyzing the recoil cross section spectra extracted from the nuclear data libraries using NJOY2012, we found that the recoil cross section spectra were incorrect for~(72)Ge,~(75)As, ~(89)Y, and ~(109)Ag in the ENDF/B-VII.1 library, and for ~(90)Zr and ~(55)Mn in the JEFF3.2 library. From analyzing the heating number, we found that the data extracted from the ACE file of TENDL2015 for all nuclides were problematic in the neutron capture region because of incorrect data regarding the emitted gamma energy. However, PHITS + TENDL2015 can calculate PKA spectra and heating numbers correctly.
机译:由于初级敲除原子(PKA)在被中子辐照的材料中产生点缺陷和簇,因此重要的是验证用于估计材料辐射损伤的反冲截面光谱的计算。在此,使用粒子和重离子迁移代码系统(PHITS)的事件生成器模式(EGM)以及还使用了带有核数据库的数据处理代码NJOY2012,计算了与裂变和聚变有关的材料的反冲截面光谱TENDL2015,ENDF / BVII.1和JEFF3.2。还使用PHITS-EGM计算了作为反冲截面光谱的积分的发热量,并将其与从TENDL2015,ENDF / BVII.1和JENDL4.0的ACE文件中提取的数据进行了比较。通常,PHITS + TENDL2015和NJOY + TENDL2015的PKA光谱之间只有很小的差异。通过使用NJOY2012分析从核数据库中提取的反冲截面谱,我们发现〜(72)Ge,〜(75)As,〜(89)Y和〜(109)的反冲截面谱是不正确的ENDF / B-VII.1库中的Ag,JEFF3.2库中的〜(90)Zr和〜(55)Mn。通过分析发热量,我们发现从TENDL2015的ACE文件中提取的所有核素的数据在中子捕获区域都是有问题的,因为有关发射的伽马能量的数据不正确。但是,PHITS + TENDL2015可以正确计算PKA光谱和加热数。

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