Shape Coexistence and Mixing in 152Sm

dc.creatorKulp, W. D.
dc.creatorWood, J. L.
dc.creatorGarrett, P. E.
dc.creatorWu, C. Y.
dc.creatorCline, D.
dc.creatorAllmond, J. M.
dc.creatorBandyopadhyay, D.
dc.creatorDashdorj, D.
dc.creatorChoudry, S. N.
dc.creatorHayes, A. B.
dc.creatorHua, H.
dc.creatorLesher, S. R.
dc.creatorMynk, M.
dc.creatorMcEllistrem, M. T.
dc.creatorMcKay, C. J.
dc.creatorOrce, J. N.
dc.creatorTeng, R.
dc.creatorYates, S. W.
dc.date2007-06-28
dc.date2007-06-28
dc.date.accessioned2026-07-07T08:12:50Z
dc.date.available2026-07-07T08:12:50Z
dc.descriptionExperimental studies of 152Sm using multiple-step Coulomb excitation and inelastic neutron scattering provide key data that clarify the low-energy collective structure of this nucleus. No candidates for two-phonon beta-vibrational states are found. Experimental level energies of the ground-state and first excited (0+ state) rotational bands, electric monopole transition rates, reduced quadrupole transition rates, and the isomer shift of the first excited 2+ state are all described within ~10% precision using two-band mixing calculations. The basic collective structure of 152Sm is described using strong mixing of near-degenerate coexisting quasi-rotational bands with different deformations.
dc.description8 single-spaced, single-column pages, 4 figures, 1 table. Submitted to Physical Review Letters
dc.identifierhttps://arxiv.org/abs/0706.4129
dc.identifierhttp://arxiv.org/abs/0706.4129
dc.identifier.urihttp://salesiana.dossiersoluciones.com/handle/123456789/132594
dc.subjectNuclear Experiment
dc.titleShape Coexistence and Mixing in 152Sm
dc.typetext

Files

Collections