English

Beta-delayed fission in the coupled Quasi-particle Random Phase Approximation plus Hauser-Feshbach approach

Nuclear Theory 2023-01-11 v1 Nuclear Experiment

Abstract

Beta-delayed neutron emission and β\beta-delayed fission (β\betadf) probabilities were calculated for heavy, neutron-rich nuclei using the Los Alamos coupled Quasi-Particle Random Phase Approximation plus Hauser-Feshbach (QRPA+HF) approach. In this model, the compound nucleus is initially populated by β\beta-decay and is followed through subsequent statistical decays taking into account competition between neutrons, γ\gamma-rays and fission. The primary output of these calculations includes branching ratios along with neutron and γ\gamma-ray spectra. We find a relatively large region of heavy nuclides where the probability of β\betadf is near 100%. For a subset of nuclei near the neutron dripline, delayed neutron emission and the probability to fission are both large which leads to the possibility of multi-chance β\betadf (mc-β\betadf). We comment on prospective neutron-rich nuclei that could be probed by future experimental campaigns and provide a full table of branching ratios in ASCII format in the supplemental material for use in various applications.

Keywords

Cite

@article{arxiv.2201.02889,
  title  = {Beta-delayed fission in the coupled Quasi-particle Random Phase Approximation plus Hauser-Feshbach approach},
  author = {M. R. Mumpower and T. Kawano and T. M. Sprouse},
  journal= {arXiv preprint arXiv:2201.02889},
  year   = {2023}
}

Comments

12 pages, 7 figures