Low-lying structure and weak-coupling multiplets of odd-mass Te isotopes below and beyond the neutron magic number N=82

IF 3.1 2区 物理与天体物理 Q1 Physics and Astronomy
Hui Jiang, Chang-hao Mao, Yang Lei, Guan-Jian Fu, Zhen-Zhen Qin
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引用次数: 0

Abstract

The low-lying level schemes, E2 transitional rates, electrical quadrupole moments Q, and magnetic dipole moments μ of odd-mass Te isotopes with mass number from 129–139 are calculated within the framework of the nucleon-pair approximation of the shell model by using the standard multipole-multipole interaction in a large truncated space. Good agreement is obtained between the calculated results and experimental data. The dominant configurations in collective nucleon-pair basis of low-lying yrast states in Te129133 and Te135139 are analyzed in detail. The possible weak-coupling multiplets in these nuclei are probed by investigating the corresponding relative excitation energy, wave function, E2 transition rates, electric quadrupole moments Q, and magnetic dipole moment μ. E2 ground-state transitions of odd-mass nuclei and even-even core are compared, and a similar asymmetry pattern with respect to N=82 is obtained. The electromagnetic moments Q and μ of the 3/21+, 11/21 states in Te129133, and the 7/21 state in Te135139 are discussed in terms of the overall trend and the contribution of the proton and neutron components.

Abstract Image

低于和超过中子神奇数 N=82 的奇数质量 Te 同位素的低洼结构和弱耦合多重子
在核子对近似的壳模型框架内,利用大截断空间中的标准多极-多极相互作用,计算了质量数为 129-139 的奇数质量 Te 同位素的低电平方案、E2 过渡率、电四极矩 Q 和磁偶极矩 μ。计算结果与实验数据之间获得了良好的一致性。详细分析了 Te129-133 和 Te135-139 中低洼 yrast 态的集体核子对基础的主要构型。通过研究相应的相对激发能量、波函数、E2跃迁速率、电四极矩 Q 和磁偶极矩 μ,探测了这些原子核中可能存在的弱耦合多子。比较了奇数质量核和偶偶核的 E2 基态跃迁,得到了与 N=82 类似的不对称模式。讨论了 Te129-133 的 3/21+ 和 11/21- 态以及 Te135-139 的 7/21- 态的电磁矩 Q 和 μ 的总体趋势以及质子和中子成分的贡献。
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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来源期刊
Physical Review C
Physical Review C 物理-物理:核物理
CiteScore
5.70
自引率
35.50%
发文量
0
审稿时长
1-2 weeks
期刊介绍: Physical Review C (PRC) is a leading journal in theoretical and experimental nuclear physics, publishing more than two-thirds of the research literature in the field. PRC covers experimental and theoretical results in all aspects of nuclear physics, including: Nucleon-nucleon interaction, few-body systems Nuclear structure Nuclear reactions Relativistic nuclear collisions Hadronic physics and QCD Electroweak interaction, symmetries Nuclear astrophysics
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