Description of cluster states above doubly magic within a coupled-channels formalism plus core excitation
Phys. Rev. C 112, 034336 – Published 29 September, 2025
DOI: https://doi.org/10.1103/6lb3-nt7q
Abstract
The cluster degree of freedom has often been introduced to interpret the spectroscopic properties of exotic nuclei including -conjugate nuclei and a series of nuclei above double shell closures. In this study, we have systematically investigated the so-called unnatural-parity states and higher-lying bands for the typical nucleus based on the coupled-channels formalism, which allows the excitation of the core plus multiple interactions. A general agreement between our calculations and the available data was obtained for the parity doublet bands and electromagnetic transition probabilities. Encouraged by that result, the present framework is extended to describe the nuclear properties of with the configuration of heavier cluster plus core . Reasonable predictions of reduced transition rates and great improvement of energy bands for were achieved beyond the treatment of the binary cluster-core model (BCM) without the coupling of cluster states, reconfirming the reliability of the present coupled-channels formalism. It is hoped that the current study can yield a new perspective on understanding the role of cluster degrees of freedom in heavy nuclei.