arXiv:1608.01956·v1·Nuclear Theory
Neutron-gamma competition for -delayed neutron emission
Matthew Mumpower · Toshihiko Kawano · Peter Moller
Abstract
We present a coupled Quasi-particle Random Phase Approximation and Hauser-Feshbach (QRPA+HF) model for calculating delayed particle emission. This approach uses microscopic nuclear structure information which starts with Gamow-Teller strength distributions in the daughter nucleus, and then follows the statistical decay until the initial available excitation energy is exhausted. Explicitly included at each particle emission stage is -ray competition. We explore this model in the context of neutron emission of neutron-rich nuclei and find that neutron-gamma competition can lead to both increases and decreases in neutron emission probabilities, depending on the system considered. A second consequence of this formalism is a prediction of more neutrons on average being emitted after -decay for nuclei near the neutron dripline compared to models that do not consider the statistical decay.
Comments: 9 pages, 6 figures, submitted