First complete description of low-lying spectroscopy in $^{254}$No
Abstract
In this work, we report the first complete shell-model description of low-lying structures of No. Employing the Kuo-Herling effective interaction, the calculations are performed within the Discrete Non-Orthogonal Shell Model recently implemented with the angular-momentum Variation After Projection applied on non-axial wavefunctions. Our calculations show a striking agreement with the experimentally known spectroscopy: the \textit{Yrast} band, the (), () and () isomers together with associated bands. We reproduce the recently measured Gallagher-Moszkowski splitting between the () and () band heads. We predict the appearance of a second state, in excellent agreement with recent new observation. In addition, we systematically examine the ground state spectra, dipole and spectroscopic quadrupole moments of even-even, odd-even, odd-odd nuclei from to , which are favourably reproduced. The present description of No shows the ability of the Shell Model framework to describe the low-lying properties for such an exotic nucleus at the frontier of modern experimental nuclear physics research.
Keywords
Cite
@article{arxiv.2409.08210,
title = {First complete description of low-lying spectroscopy in $^{254}$No},
author = {D. D. Dao and F. Nowacki},
journal= {arXiv preprint arXiv:2409.08210},
year = {2025}
}