Deuteron Optical Model Calculations for Elastic and Inelastic Reactions on 14N, 16O, 27Al Target Nuclei

H. Büyükuslu
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Abstract

Nuclear reaction cross sections have a key role in nuclear radioisotope production research. It is also an important part of applied fields such as energy production and experimental nuclear studies. It has been the subject of theoretical studies such as elucidating the nuclear structure and preparing and testing nuclear reaction models. It has become a very useful tool, especially for determining nuclear optical model parameters. In this study differential cross sections were calculated for elastic and inelastic scattering of 14-15 MeV energy range deuterons from 14N, 16O and 27Al. Calculation were carried out with TALYS 1.96/2.0 nuclear reaction code. Calculations include determining the deuteron optical model that match the experimental data.  The values calculated with theoretical models were compared with experimental data obtained from the literature. While such studies are important for testing nuclear reaction models, they are also important for encouraging the preparation of nuclear reaction codes.
关于 14N、16O、27Al 靶核弹性和非弹性反应的氘核光学模型计算
核反应截面在核放射性同位素生产研究中起着关键作用。它也是能源生产和核实验研究等应用领域的重要组成部分。它一直是理论研究的主题,如阐明核结构以及准备和测试核反应模型。它已成为一种非常有用的工具,尤其是在确定核光学模型参数方面。本研究计算了 14N、16O 和 27Al 的 14-15 MeV 能量范围氘核的弹性和非弹性散射的差分截面。计算使用 TALYS 1.96/2.0 核反应代码进行。计算包括确定与实验数据相匹配的氘核光学模型。 用理论模型计算出的数值与从文献中获得的实验数据进行了比较。这些研究对测试核反应模型非常重要,同时对鼓励编制核反应代码也很重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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