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Communication Dans Un Congrès Année : 2017

Shell-model calculation of isospin-symmetry breaking correction to superallowed Fermi beta-decay

Résumé

We investigate the radial-overlap part of the isospin-symmetry breaking correction to superallowed $0^+\to 0^+$-decay using the shell-model approach similar to that of Refs. [1, 2]. The 8 sd-shell emitters with masses between $A=22$ and $A=38$ have been re-examined. The Fermi matrix element is evaluated with realistic spherical single-particle wave functions, obtained from spherical Woods-Saxon (WS) or Hartree-Fock (HF) potentials, fine-tuned to reproduce the experimental data on charge radii and separation energies for nuclei of interest. The elaborated adjustment procedure removes any sensitivity of the correction to a specific parametrisation of the WS potential or to various versions of the Skyrme interaction. The present results are generally in good agreement with those reported in Refs. [3, 4]. At the same time, we find that the calculations with HF wave functions result in systematically lower values of the correction.

Dates et versions

hal-01584601 , version 1 (09-09-2017)

Identifiants

Citer

L. Xayavong, N.A. Smirnova, M. Bender, K. Bennaceur. Shell-model calculation of isospin-symmetry breaking correction to superallowed Fermi beta-decay. 23rd Nuclear Physics Workshop 'Marie & Pierre Curie' on Essential Problems in Nuclear Physics, Sep 2016, Kazimierz Dolny, Poland. pp.285, ⟨10.5506/APhysPolBSupp.10.285⟩. ⟨hal-01584601⟩
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