Evolution of nuclear shell structure in neutron-rich nuclei N=32 and N=34

Cong Cuong Do, D. L. Bui, Duc Ton Nguyen
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Abstract

This paper presents an overview of the experimental setup to study the structure of unstable nuclear isotopes in the region from 47Cl to 63V of the SEASTAR 3 project and the evolution of shell structure in neutron-rich nuclei N=32 and N=34. The first excited energies of Cl, Ar, and K isotopes around N=32, N=34 obtained from the SEASTAR 3 project were determined. The evolution of shell structure in neutron-rich nuclei N=32 và N=34 is explained by the contribution of tensor forces in addition to central and spin-orbit forces. The appearance of new magic neutron N=34 in 54Ca is explained due to proton-neutron tensor force that pulls neutron 0f5/2 lower than 1p1/2 level, leading to not only causes the spin inversion of neutrons at 1p1/2 and 0f5/2 levels and enlarges an energy gap between these levels. The change of proton and neutron energy levels in Cl, Ar, and K isotopes around N=32, N=34 driven by tensor force was also discussed in this article.
富中子核 N=32 和 N=34 的核壳结构演变
本文概述了用于研究 SEASTAR 3 项目 47Cl 至 63V 区域不稳定核同位素结构的实验装置,以及富中子核 N=32 和 N=34 的壳结构演变。确定了 SEASTAR 3 项目获得的 N=32 和 N=34 附近 Cl、Ar 和 K 同位素的第一激发能量。除了中心力和自旋轨道力之外,张力的贡献也解释了富中子核 N=32 和 N=34 壳结构的演变。质子-中子张力将中子 0f5/2 拉低到 1p1/2 水平,不仅导致中子在 1p1/2 和 0f5/2 水平的自旋反转,而且扩大了这两个水平之间的能隙,从而解释了 54Ca 中新神奇中子 N=34 的出现。本文还讨论了在张力作用下,Cl、Ar 和 K 同位素中质子和中子能级在 N=32 和 N=34 附近的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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