Improving the sd-shell effective interaction obtained from the Daejeon16 nucleon-nucleon interaction

IF 3.1 2区 物理与天体物理 Q1 Physics and Astronomy Physical Review C Pub Date : 2024-09-09 DOI:10.1103/physrevc.110.034306
Ik Jae Shin, Nadezda A. Smirnova, Andrey M. Shirokov, Zuxing Yang, Bruce R. Barrett, Zhen Li, Youngman Kim, Pieter Maris, James P. Vary
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Abstract

We present new microscopic effective shell-model interactions in the valence sd shell, obtained from the modern Daejeon16 nucleon-nucleon potential using no-core shell-model (NCSM) wave functions of F18 at Nmax=6 (total oscillator quanta of excitation) model space and the Okubo-Lee-Suzuki transformation. First, we explore the convergence properties of our calculations and show that the excitation energies of states in F18, characterized by the largest valence-like configurations, are reasonably converged and the lowest states are in sensible agreement with experiment. Then, we investigate the monopole properties of that interaction in comparison with the phenomenological universal sd-shell interaction, USDB, and with the previously derived interaction at Nmax=4. Theoretical binding energies and low-energy spectra of the O isotopes, as well as low-energy spectra of a selection of sd-shell nuclei, are presented. We conclude that the use of larger-space NCSM wave functions leads to a noticeable improvement in the quality of the derived effective interaction. We propose monopole modifications of the Daejeon16 centroids which further improve the agreement with experiment throughout the sd shell, as demonstrated by a compilation of spectra contained in Supplemental Material.

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改进从 Daejeon16 核子-核子相互作用中获得的 sd-shell 有效相互作用
我们利用 F18 在 Nmax=6(激发的总振子量子)模型空间下的无核壳模型(NCSM)波函数和 Okubo-Lee-Suzuki 变换,从现代 Daejeon16 核子-核子势中得到了价 sd 壳的新的微观有效壳模型相互作用。首先,我们探讨了计算的收敛特性,结果表明 F18 中以最大类价构型为特征的态的激发能量收敛合理,最低态与实验结果吻合。然后,我们研究了这种相互作用的单极特性,并将其与现象学上的通用 sd 壳相互作用(USDB)以及之前推导出的 Nmax=4 时的相互作用进行了比较。我们展示了 O 同位素的理论结合能和低能光谱,以及一些 sd 壳原子核的低能光谱。我们的结论是,使用较大空间的 NCSM 波函数会明显改善推导出的有效相互作用的质量。我们提出了对 Daejeon16 中心点的单极修改,这进一步提高了整个 sd 壳与实验的一致性,补充材料中的光谱汇编证明了这一点。
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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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