arXiv:1406.3445·v2·Nuclear Theory
Single-phonon and multi-phonon excitations of the vibration in rotating odd- nuclei
Abstract
Multi-phonon excitations in atomic nuclei were observed very rarely although collective motions in quantum many-body systems are described as bosonic excitations. In particular, the first two-phonon vibrational () excitation in odd- nuclei was reported in 2006 and only a few have been known. Quite recently, conspicuously enhanced s feeding states were observed in Nb and conjectured that their parent states are candidates of states. In the present work, the model space is enlarged from the present author's previous calculation for Nb. The purpose is twofold: One is to see how the description of states is improved, and the other is to examine the existence of collective states, and when they exist, study their collectivity through calculating interband s. The particle-vibration coupling model based on the cranking model and the random-phase approximation is used to calculate the vibrational states in rotating odd- nuclei. Interband s are calculated by adopting the method of the generalized intensity relation. The present calculation reproduces the observed spectra of - states well and gives collective states with enhanced s to states in Nb and Nb. The most collective state with the highest at zero rotation is thought to be the main component of the observed band.
Comments: 20 pages, 10 figures