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Statistical Model Analysis of (n,p) Cross Sections and Average Energy For Fission Neutron Spectrum

机译:(N,P)截面和裂变中子谱平均能量的统计模型分析

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Investigation of charged particle emission reaction cross sections for fast neutrons is important to both nuclear reactor technology and the understanding of nuclear reaction mechanisms. In particular, the study of (n,p) cross sections is necessary to estimate radiation damage due to hydrogen production, nuclear heating and transmutations in the structural materials of fission and fusion reactors. On the other hand, it is often necessary in practice to evaluate the neutron cross sections of the nuclides for which no experimental data are available. Because of this, we carried out the systematical analysis of known experimental (n,p) and (n,a) cross sections for fast neutrons and observed a systematical regularity in the wide energy interval of 6-20 MeV and for broad mass range of target nuclei. To explain this effect using the compound, pre-equilibrium and direct reaction mechanisms some formulae were deduced. In this paper, in the framework of the statistical model known experimental (n,p) cross sections averaged over the thermal fission neutron spectrum of U-235 are analyzed. It was shown that the experimental data are satisfactorily described by the statistical model. Also, in the case of (n,p) cross sections the effective average neutron energy for fission spectrum of U-235 was found to be around 3 MeV.
机译:用于快速中子的带电粒子发射反应横截面的研究对于核反应堆技术至关重要,对核反应机制的理解是重要的。特别地,对(N,P)横截面的研究是为了估计由于裂变和熔融反应器的结构材料中的氢生产,核加热和差异而导致的辐射损伤。另一方面,在实践中通常需要评估核素的中子横截面,没有实验数据。因此,我们对快速中子的已知实验(n,a)横截面的系统分析进行了系统分析,并在6-20mev的宽能间隔和广泛的质量范围内观察到系统规则性目标核。用化合物解释这种效果,预平衡和直接反应机制推导出一些配方。在本文中,分析了在统计模型的框架中,分析了在U-235的热裂变中子谱上平均的已知实验(N,P)横截面。结果表明,统计模型令人满意地描述了实验数据。而且,在(n,p)横截面的情况下,发现U-235的裂解光谱的有效平均中子能量约为3meV。

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