首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Measurement of secondary neutron emission double-differential cross sections for ~9Be induced by 21.65 ± 0.07 MeV neutrons
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Measurement of secondary neutron emission double-differential cross sections for ~9Be induced by 21.65 ± 0.07 MeV neutrons

机译:21.65±0.07 MeV中子引起的〜9Be的次级中子发射双微分截面的测量

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摘要

The neutron emission double-differential cross sections (DDX) of ~9Be was measured at an incident neutron energy of 21.65 MeV, using the multi-detector fast neutron time-of-flight (TOF) spectrometer on HI-13 Tandem Accelerator at the China Institute of Atomic Energy (CIAE). The data were deduced by comparing the measured TOF spectra with the calculated ones using a realistic Monte-Carlo simulation. The DDX were normalized to n-p scattering cross sections which are a neutron scattering standard. The results of the elastic scattering angular distributions (DX) and the secondary neutron emission DDX at 25 different angles from 15 deg to 145 deg were presented. Meanwhile, a theoretical model based on the unified Hauser-Feshbach and exciton model for light nuclei was used to describe the double-differential cross sections of n+~9Be, and the theoretical calculation results were compared with the measured cross sections.
机译:使用中国HI-13串联加速器上的多探测器快速中子飞行时间(TOF)光谱仪,在入射中子能量为21.65 MeV的条件下测量了〜9Be的中子发射双差截面(DDX)。原子能研究所(CIAE)。通过使用真实的蒙特卡洛模拟将测得的TOF谱与计算出的TOF谱进行比较,得出数据。将DDX标准化为n-p散射截面,这是中子散射标准。给出了从15度到145度的25个不同角度的弹性散射角分布(DX)和次级中子发射DDX的结果。同时,采用基于统一的Hauser-Feshbach和激子光核模型的理论模型描述n +〜9Be的双微分截面,并将理论计算结果与实测截面进行了比较。

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