Systematic study of cluster radioactivity within the generalized liquid drop model*

IF 3.6 2区 物理与天体物理 Q1 PHYSICS, NUCLEAR
Jun-Gang Deng, 军刚 邓, Jun-Hao Cheng, 俊皓 程, Xiao-Jun Bao, 小军 包, Hong-Fei Zhang and 鸿飞 张
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引用次数: 0

Abstract

Cluster radioactivity is studied within the generalized liquid drop model (GLDM), in which the shell correction energy, pairing energy, and cluster preformation factor are considered. The calculations show significant improvements and can reproduce the experimental data within a factor of 8.04 after considering these physical effects. In addition, the systematic trend of the cluster preformation factors is discussed in terms of the scheme to study the influence of the valence proton-neutron interaction and shell effect on cluster radioactivity. It is found that is linearly related to . This is in agreement with a recent study [L. Qi et al., Phys. Rev. C 108, 014325 (2023)], in which , obtained using different theoretical models and treatment methods than those used in this study, also had a linear relationship with . Combined with the work by Qi et al., this study suggests that the linear relationship between and is model-independent and both the shell effect and valence proton-neutron interaction play essential roles in cluster radioactivity. An analytical formula is proposed to calculate the cluster preformation factor based on the scheme. In addition, the cluster preformation factors and the cluster radioactivity half-lives of some heavy nuclei are predicted, which can provide a reference for future experiments.
在广义液滴模型中对集束放射性进行系统研究*
在广义液滴模型(GLDM)中研究了簇放射性,其中考虑了壳校正能、配对能和簇预形成因子。在考虑了这些物理效应后,计算结果有了明显改善,可以在 8.04 倍的范围内重现实验数据。此外,从研究价质子-中子相互作用和壳效应对团簇放射性影响的方案出发,讨论了团簇预成系数的系统趋势。研究发现,Ⅴ与.呈线性关系,这与最近的一项研究[L. Qi 等,Phys. Rev. C 108, 014325 (2023)]一致,在该研究中,采用与本研究不同的理论模型和处理方法得到的Ⅴ与.也呈线性关系。结合 Qi 等人的研究,本研究表明,与 之间的线性关系与模型无关,壳效应和价质子-中子相互作用在团簇放射性中起着至关重要的作用。根据该方案,提出了计算簇预形成因子的解析公式。此外,还预测了一些重核的簇预形成因子和簇放射性半衰期,为今后的实验提供了参考。
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来源期刊
中国物理C
中国物理C 物理-物理:核物理
CiteScore
6.50
自引率
8.30%
发文量
8976
审稿时长
1.3 months
期刊介绍: Chinese Physics C covers the latest developments and achievements in the theory, experiment and applications of: Particle physics; Nuclear physics; Particle and nuclear astrophysics; Cosmology; Accelerator physics. The journal publishes original research papers, letters and reviews. The Letters section covers short reports on the latest important scientific results, published as quickly as possible. Such breakthrough research articles are a high priority for publication. The Editorial Board is composed of about fifty distinguished physicists, who are responsible for the review of submitted papers and who ensure the scientific quality of the journal. The journal has been awarded the Chinese Academy of Sciences ‘Excellent Journal’ award multiple times, and is recognized as one of China''s top one hundred key scientific periodicals by the General Administration of News and Publications.
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