English

Shell model description of the $N=82$ isotonic chain with a new effective interaction

Nuclear Theory 2026-01-15 v2

Abstract

In this work, we present a systematic study of low-lying states and electromagnetic properties of the semi-magic N=82N = 82 isotonic chain with proton number Z=51Z=51-77, using the full configuration interaction shell model with a newly developed high-quality effective interaction. The calculations are performed in a large model space that includes all proton orbitals between Z=50Z = 50 and 82: 0g7/20g_{7/2}, 1d5/21d_{5/2}, 1d3/21d_{3/2}, 2s1/22s_{1/2}, and 0h11/20h_{11/2}. The effective interaction is derived through the principal component analysis approach, starting from 160 two-body matrix elements and 5 single-particle energies and considering up to 30 degrees of freedom. Those are optimized by fitting to 204 available experimental energy levels. The resulting root-mean-square deviation is as low as 102 keV. The new interaction successfully reproduces the binding energies, low-lying spectra, electric quadrupole transition probabilities B(E2)B(E2), and magnetic dipole moments across both even-even and odd-mass isotones. The nuclear structure of low-lying states is analyzed in detail. Additionally, predictions are made for several more proton-rich nuclei beyond current experimental reach, including 155Ta^{155}\mathrm{Ta}, 156W^{156}\mathrm{W}, 157Re^{157}\mathrm{Re}, 158Os^{158}\mathrm{Os}, and 159Ir^{159}\mathrm{Ir}.

Keywords

Cite

@article{arxiv.2507.14506,
  title  = {Shell model description of the $N=82$ isotonic chain with a new effective interaction},
  author = {Y. X. Yu and Q. Y. Chen and Chong Qi and G. J. Fu},
  journal= {arXiv preprint arXiv:2507.14506},
  year   = {2026}
}