Beta delayed neutron emission of $N=84$ $^{132}$Cd
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.
Cite
@article{arxiv.2412.04333,
title = {Beta delayed neutron emission of $N=84$ $^{132}$Cd},
author = {M. Madurga and Z. Y. Xu and 1 R. Grzywacz and M. R. Mumpower and A. Andreyev and G. Benzoni and M. J. G. Borge and C. Costache and I. Cox and S. Cupp and B. Dimitrov and P. Van Duppen and L. M. Fraile and S. Franchoo and H. Fynbo and B. Gonsalves and A. Gottardo and P. T. Greenless and A. Gross and C. J. Gross and L. J. Harkness-Brennan and M. Hyuse and D. S. Judson and S. Kisyov and K. Kolos and J. Konki and J. Kurzewicz and I. Lazarus and R. Lica and L. Lynch and M. Lund and N. Marginean and R. Marginean and C. Mihai and I. Marroquin and C. Mazzocchi and D. Mengoni and A. I. Morales and E. Nacher and A. Negret and R. D. Page and S. Pascu and S. V. Paulauskas and A. Perea and M. Piersa-Silkowska and V. Pucknell and P. Rahkila and E. Rapisarda and F. Rotaru and C. Sotty and S. Taylor and O. Tengblad and V. Vedia and D. Verney and R. Wadsworth and N. Warr and H. de Witte},
journal= {arXiv preprint arXiv:2412.04333},
year = {2026}
}
Comments
8 pages, 6 figures