S. Mezhevych, A. Rudchik, O. Ponkratenko, K. Rusek, K. Kemper, V.M. Kyrianchuk, A. A. Rudchik, Y. Stepanenko, V. Uleshchenko
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引用次数: 0
Abstract
A comparative analysis of calculations for the 12С(10В,10В)12С elastic scattering at Еlab(10B) = 41.3 MeV, the 12С(11В,11В)12С elastic scattering at Еlab(11B) = 40.0 MeV, transfer reactions 13С(11В,12С)12В and 14С(11В,12С)13В at Еlab(11B) = 45.0 МеВ was performed within the coupled-reaction-channels method (CRC) using previously deduced Woods-Saxon potentials for the interaction of 10,11,12,13В + 12С nuclei in the exit reaction channels, as well as potentials for these systems of nuclei generated by means of the double-folding method using theoretically modeled shapes for the distributions of protons and neutrons in 10,11,12,13В and 12С. The relationship of isotopic effects (differences of the calculated CRC cross sections when replacing the potential for a given pair of nuclei by interaction potential for one nucleus with the isotope of another nucleus) with the internal structure, e.g. the shapes of nucleon density distributions in the interacting nuclei, is investigated. The shapes (radial dependence) of recently deduced Woods-Saxon potentials and potentials calculated by means of the double-folding methods for the systems of 10,11,12,13В + 12С nuclei are compared. Based on the results of the analysis of experimental data, an assumption is made about the possible differences in the shapes of surface nucleon density distributions from the ones modeled theoretically in 10,11B isotopes.
比较分析计算的12个С(10В10В)12С弹性散射Е实验室(10 b) = 41.3兆电子伏,12个С(11ВВ11日)12С弹性散射Е实验室(11 b) = 40.0兆电子伏,转移反应13С(11В12С)12В和14С(11В12С)13ВЕ实验室(11 b) = 45.0МеВcoupled-reaction-channels内执行方法(CRC)使用之前推断Woods-Saxon潜力10的交互,11日12日13日В+ 12С原子核在反应退出渠道,以及利用理论模拟的质子和中子在10、11、12、13В和12С的分布的形状,用双折叠方法产生的这些核系统的势。研究了同位素效应(用一个原子核与另一个原子核的同位素相互作用势代替一对给定原子核的势时计算出的CRC截面的差异)与内部结构(如相互作用原子核中核子密度分布的形状)的关系。比较了10、11、12、13В + 12С核系最近推导的Woods-Saxon势和用双折叠方法计算的势的形状(径向依赖)。根据实验数据的分析结果,对10、11B同位素表面核子密度分布的形状与理论模型可能存在的差异作了假设。
期刊介绍:
The journal Nuclear Physics and Atomic Energy presents the publications on Nuclear Physics, Atomic Energy, Radiation Physics, Radioecology, Engineering and Methods of Experiment. The journal includes peer-reviewed articles which are completed works containing new results of theoretical and experimental researches and are of interest for the scientists, postgraduate students, engineers and for the senior students.