原子核的电荷半径和壳层效应

M. Chushnyakova, I. Gontchar, E. V. Kulik
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引用次数: 0

摘要

本文研究了球形原子核的均方根电荷半径的实验数据。这一分析的目的是阐明中子壳层在考虑的可观测物中的表现,并找出壳层中子交叉时电荷半径行为的规律。结果,我们发现了N_sh=8、28、50和82的壳的表现。结果是,众所周知的中子序数为20和126的壳层没有出现。本分析是用相对电荷半径x(N,N_sh,Z)进行的。这个值等于给定同位素的电荷半径除以具有封闭中子壳层的给定元素的同位素的电荷半径。结果表明,x的值与不同的N_sh值形成相应的组。对硫-30的未知电荷半径进行了预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Charge radii of atomic nuclei and shell effects
In the present work, we study the experimental data on the root mean square charge radii of the spherical atomic nuclei. The purpose of this analysis is to clarify what is the manifestation of the neutron shells in the considered observable and to find regularities in the behavior of the charge radii when a shell neutron is crossed. As the result, we have found manifestations of the shells N_sh=8,28,50 and 82. It turns out that the well-known shells with the neutron numbers 20 and 126 do not show up. The present analysis is performed by means of the relative charge radius x(N,N_sh,Z). This value is equal to the charge radius of a given isotope over the charge radius of the isotope of the given element with the closed neutron shell. It is shown that the values of x form groups corresponding to different values of N_sh. Prediction for unknown charge radius of sulfur-30 has been made.
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