Elastic Form Factors and Matter Density Distributions of Some Neutron-Rich Nuclei

Hawraa K. Mahdi, A. Abdullah
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Abstract

The ground-state properties of exotic 18N and 20F nuclei, including the neutron, proton and matter densities and related  radii are investigated using the two-body model of   within Gaussian (GS) and Woods Saxon (WS) wave functions. The long tail is evident in the computed neutron and matter densities of these nuclei. The plane wave Born approximation (PWBA) is  calculate the elastic form factors of these exotic nuclei. The variation in the proton density distributions due to the presence of the extra neutrons in 18N and 20F leads to a major difference between the elastic form factors of these exotic nuclei and their stable isotopes 14N and 19F. The reaction cross sections for these nuclei are investigated using the Kox and Glauber models. Furthermore, the Glauber model is employed to calculate the matter radii of these exotic nuclei. The calculated results for the selected exotic nuclei are in a good agreement with the experimental data.        
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某些富中子核的弹性形状因子和物质密度分布
利用高斯波函数和Woods - Saxon波函数的二体模型研究了18N和20F核的基态性质,包括中子、质子和物质密度以及相关半径。长尾在计算这些原子核的中子密度和物质密度时是很明显的。用平面波玻恩近似(PWBA)计算了这些奇异核的弹性形状因子。由于在18N和20F中存在额外的中子而导致质子密度分布的变化,导致这些外来核的弹性形状因子与它们的稳定同位素14N和19F之间的主要差异。用Kox和Glauber模型研究了这些原子核的反应截面。此外,还利用Glauber模型计算了这些奇异核的物质半径。所选奇异核的计算结果与实验数据吻合较好。
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