arXiv:1607.00337·v1·Nuclear Theory
Late Time Emission of Prompt Fission Gamma Rays
P. Talou · T. Kawano · I. Stetcu · J. P. Lestone · E. McKigney · M. B. Chadwick
Abstract
The emission of prompt fission rays within a few nanoseconds to a few microseconds following the scission point is studied in the Hauser-Feshbach formalism applied to the deexcitation of primary excited fission fragments. Neutron and -ray evaporations from fully accelerated fission fragments are calculated in competition at each stage of the decay, and the role of isomers in the fission products, before -decay, is analyzed. The time evolution of the average total -ray energy, average total -ray multiplicity, and fragment-specific -ray spectra, is presented in the case of neutron-induced fission reactions of U and Pu, as well as spontaneous fission of Cf. The production of specific isomeric states is calculated and compared to available experimental data. About 7% of all prompt fission rays are predicted to be emitted between 10 nsec and 5 sec following fission, in the case of U and Pu reactions, and up to 3% in the case of Cf spontaneous fission. The cumulative average total -ray energy increases by 2 to 5% in the same time interval. Finally, those results are shown to be robust against significant changes in the model input parameters.
Comments: 11 pages, 14 figures