30MeV以下p +9Be弹性散射:光学模型分析与数据归一化

H. M. Maridi, A. Pakou, K. Rusek
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引用次数: 2

摘要

[公式:见文]在质子入射能量为30 MeV以下[公式:见文],用两种方法计算弹性散射的微分截面数据。首先,进行光学模型分析,并对分析功率和反应截面进行分析,提取光势参数;然后利用该势计算微分截面的角分布,并与实验数据进行比较,提取归一化系数。其次,在最小化过程中考虑具有相似能量的数据集之间的一致性比较,以获得另一组数据归一化系数。这两种技术对现有数据产生了相似的归一化值,并一致地验证了一系列低能量数据,这些数据可以安全地用于进一步的理论研究。此外,还确定了体积积分的系统行为和能量依赖关系,并预测了反应截面的能量依赖关系。
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The p +9Be elastic scattering below 30MeV: Optical model analysis and data normalization
Differential cross-section data of elastic scattering for [Formula: see text]Be below a proton incident energy of 30[Formula: see text]MeV are evaluated by using two techniques. First, optical model analysis is performed and applied to the analyzing powers and reaction cross-sections to extract the optical potential parameters. Then, angular distributions of the differential cross-section are calculated with this potential and compared with the experimental data and normalization coefficients are extracted. Second, a consistent comparison between data sets with similar energies is considered in a minimization process to obtain another set of data normalization coefficients. The two techniques lead to similar normalized values for the existing data and consistently validate a body of low-energy data that can be safely used for further theoretical studies. Furthermore, the systematic behavior and energy dependence of the volume integral are determined as well as the energy dependence of the reaction cross-sections is predicted.
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