PaperPanorama

arXiv:2412.04333·v3·Nuclear Experiment

Beta delayed neutron emission of Cd

M. Madurga🇺🇸 · Z.Y. Xu🇺🇸 · 1 R. Grzywacz🇺🇸 · M.R. Mumpower · A. Andreyev🇬🇧 · G. Benzoni🇮🇹 · M.J.G. Borge🇨🇭 · C. Costache🇷🇴 · I. Cox🇺🇸 · S. Cupp · B. Dimitrov🇧🇬 · P. Van Duppen🇧🇪

Abstract

Using the time-of-flight technique, we measured the beta-delayed neutron emission of Cd. From our large-scale shell model (LSSM) calculation using the NLO interaction [Z.Y. Xu et al., Phys. Rev. Lett. 131, 022501 (2023)], we suggest the decay is dominated by the transformation of a neutron in the orbital, deep below the Fermi surface, into a proton in the orbital. We compare the beta-decay half-lives and neutron branching ratios of nuclei with and obtained with our LSSM with those of leading "global" models such as Finite-Range Droplet Model (FRDM). Our calculations match known half-lives and neutron branching ratios well and suggest that current leading models overestimate the yet-to-be-measured half-lives. Our model, backed by the Cd decay data presented here, offers robust predictive power for nuclei of astrophysical interest such as -process waiting points.

Comments: 8 pages, 6 figures