原子核空间结构的计算机可视化

Migal L.V, B. V.G.
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引用次数: 0

摘要

在核壳模型的基础上,建立了原子核空间结构的计算机模型。新方法的应用,通过类比原子电子壳层的建模,使我们能够可视化原子核的结构。在提出的空间模型中,核子的概念也被扩展到除了质子和中子之外,还包括核壳层中的氘核。阐明了量子数和幻数的本质,揭示了核壳的结构。由此得到的核子的空间排列清楚地表明原子核中存在精细结构。该模型的充分性通过核半径对电荷数依赖性的相关性以及非对称核形状对电荷数依赖性的曲线得到证实,该曲线与电四极矩的类似依赖性几乎完全吻合。对限制自然界中存在的同位素数量的原因进行了考虑。根据所得结果,确定了np图中原子中同位素极限数的估计公式。
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COMPUTER VISUALIZATION OF THE SPATIAL STRUCTURE OF THE ATOMIC NUCLEUS
Based on the model of the nuclear shells, a computer model of the spatial structure of the atomic nucleus was constructed. The application of the new approach, by analogy with the modeling of the atom electron shell, allowed us to visualize the structure of the atomic nucleus. In the presented spatial model, the concept of nucleon is also extended to include, besides protons and neutrons, deuterons in the nuclear shell. The nature of quantum and magic numbers is clarified, and the structure of the nuclear shell is shown. The resulting spatial arrangement of nucleons clearly shows the presence of a fine structure in the nucleus. Adequacy of the model is confirmed by correlations of the dependences of the nucleus radius on the charge number, as well as by the curve of the asymmetric nucleus shape dependence on the charge number which almost entirely coincides with a similar dependence of the electric quadrupole moment. The reasons for limiting the number of isotopes existing in nature have been considered. Based on the results obtained, equations for estimating the limiting number of isotopes in atoms for the NP-diagram have been determined.
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