Abstract
Configuration-constrained potential-energy-surface calculations have been performed to investigate multi-quasiparticle high-K states built on superdeformed minima in 192,194,196Pb and 198Po. The calculations predict that 196Pb and 198Po would be favorable candidates for the observation of low-lying superdeformed two- and four-quasiparticle high-K states. The possible decay paths and lifetimes that could lead to isomers are evaluated in detail for 196Pb. Comparisons between the predictions and previous observations of octupole-vibrational excitations indicate also that bands built on superdeformed high-K intrinsic states may compete with the octupole-vibrational mode in this mass region. The quadrupole moments of both the collective and intrinsic excitations are analyzed. © 2012 American Physical Society.
Cite
CITATION STYLE
Shi, Y., Xu, F. R., Walker, P. M., & Dracoulis, G. D. (2012). Superdeformed multi-quasiparticle high-K states and possible isomers in Pb and Po isotopes. Physical Review C - Nuclear Physics, 85(6). https://doi.org/10.1103/PhysRevC.85.064304
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.