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Calculation of the wide-angle neutron spectra from the ~9Be(d,xn) reaction in a thick beryllium target
Authors:Zheng Wei  Jun-Run Wang  Ya-Ling Zhang  Zhi-Wu Huang  Zhan-Wen Ma  Jie Zhang  Yan-Yan Ding  Li Xia  Jian-Yi Li  Xiao-Long Lu  Yu Zhang  Da-Peng Xu  Lei Yang  Ze-En Yao
Affiliation:1. School of Nuclear Science and Technology, Lanzhou University, Lanzhou 730000, China2. Engineering Research Center for Neutron Application, Ministry of Education, Lanzhou University, Lanzhou 730000, China3. Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, China
Abstract:The multi-layer computing model is developed to calculate wide-angle neutron spectra, in the range from 0° to 180° with a 5° step, produced by bombarding a thick beryllium target with deuterons. The double-differential cross-sections (DDCSs) for the 9Be(d, xn) reaction are calculated using the TALYS-1.8 code. They are in agreement with the experimental data, and are much better than the PHITS-JQMD/GEM results at 15° , 30° , 45° and 60° neutron emission angles for deuteron energy of 10.0 MeV. In the TALYS-1.8 code, neutron contributions from direct reactions (break-up, stripping and knock-out reactions) are controlled by adjustable parameters, which describe the basic characteristics of typical direct reactions and control the relative intensity and the position of the ridgy hillock at the tail of DDCSs. It is found that the typical calculated wide-angle neutron spectra for different neutron emission angles and neutron angular distributions agree quite well with the experimental data for 13.5 MeV deuterons. The multi-layer computing model can reproduce the experimental data reasonably well by optimizing the adjustable parameters in the TALYS-1.8 code. Given the good agreement with the experimental data, the multi-layer computing model could provide better predictions of wide-angle neutron energy spectra, neutron angular distributions and neutron yields for the 9Be(d, xn) reaction neutron source.
Keywords:neutron source  9Be(d  xn) reaction  thick target  wide-angle neutron spectra  neutron angular distributions
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