paper

Verification of detailed balance for absorption and emission in Dy isotopes

arXiv:1804.07654 · doi:10.1103/PhysRevC.98.054310

Abstract

The photo-neutron cross sections of have been measured for the first time in an energy region from the neutron threshold () up to ~MeV. The (,n) reaction was induced with quasi-monochromatic laser Compton-scattered rays, produced at the NewSUBARU laboratory. The corresponding -ray strength functions (SF) have been calculated from the photo-neutron cross sections. The data are compared to reanalyzed SFs of , which are measured below . The excellent agreement with the photo-neutron data at confirms the principle of detailed balance. Thus, a complete SF is established covering in total the energy region of 1 MeV E 13 MeV. These mid-shell well-deformed dysprosium isotopes all show scissors resonances with very similar structures. We find that our data predict the same integrated scissors strength as () data when integrated over the same energy range, which shows that the scissors mode very likely is consistent with the generalized Brink hypothesis. Finally, using the SFs as input in the reaction code TALYS, we have deduced radiative neutron-capture cross sections and compared them to direct measurements. We find a very good agreement within the uncertainties, which gives further support to the experimentally determined SFs.