arXiv:nucl-th/0507045·v1·Nuclear Theory
Precession Mode on High-K Configurations: Non-Collective Axially-Symmetric Limit of Wobbling Motion
Yoshifumi R. Shimizu🇯🇵 · Masayuki Matsuzaki🇯🇵 · Kenichi Matsuyanagi🇯🇵
Abstract
We have studied the precession mode, the rotational excitation built on the high- isomeric state, in comparison with the recently identified wobbling mode. The random-phase-approximation (RPA) formalism, which has been developed for the nuclear wobbling motion, is invoked and the precession phonon is obtained by the non-collective axially-symmetric limit of the formalism. The excitation energies and the electromagnetic properties of the precession bands in W are calculated, and it is found that the results of RPA calculations well correspond to those of the rotor model; the correspondence can be understood by an adiabatic approximation to the RPA phonon. As a by-product, it is also found that the problem of too small out-of-band in our previous RPA wobbling calculations can be solved by a suitable choice of the triaxial deformation which corresponds to the one used in the rotor model.
Comments: An oral presentation at Int. Conference "Finite Fermionic Systems: Nilsson Model 50 Years", Lund, Sweden, June 14-18, 2005