Published March 19, 2012 | Version v1
Journal article

A description of odd neutron-deficient cadmium isotopes within the rotor-plus-particle model using self-consistent core signle-particle states

  • 1. Lyon-1 Univ., 69 - Villeurbanne (France). Inst. de Physique Nucleaire
  • 2. Paris-11 Univ., 91 - Orsay (France). Div. de Physique Nucleaire
  • 3. Paris-11 Univ., 91 - Orsay (France). Div. de Physique Theorique

Description

Single-particle wave functions as obtained from self-consistent calculations for the core are used to calculate within the rotor-plus-quasiparticle model, some spectroscopic properties of odd neutron-deficient cadmium isotopes. From constrained Hartree-Fock calculations including pairing correlations and performed with the SIII Skyrme effective force, the deformation energy curves of 98102106110Cd have been extracted together with the single-particle states corresponding to the equilibrium deformations. The projection of standard unified model wave functions onto eigenfunctions of the core angular momentum has allowed the authors to introduce exactly in the core Hamiltonian the experimental level sequence of the neigbouring even isotopes. Therefore all parameters entering the calculations are either valid for the whole chart of nuclides (effective force parameters) or unambiguously deduced from experimental data (core energies and pairing gaps). In spite of such an absence of free adjustable parameters the recently available experimental data concerning 105107109111Cd isotopes are correctly reproduced both for negative parity (as the expected hsub(11/2) decoupled band) and for positive parity states. In the 105Cd isotope, the authors have interpreted a set of positive parity levels as a gsub(7/2) decoupled band. They have also concluded that a prolate-oblate shape coexistence was probably absent in the low energy spectra of the isotopes considered. (Auth.)

Additional details

Publishing Information

Journal Title
Nucl. Phys., A
Journal Volume
316
Journal Issue
1-2
Series
Nucl. Phys., A.
Journal Page Range
93-115
ISSN
0029-5582