EFFECTS OF CORE POLARIZATION AND PAIRING CORRELATIONS ON SOME GROUND-STATE PROPERTIES OF DEFORMED ODD-MASS NUCLEI WITHIN THE HIGHER TAMM–DANCOFF APPROACH

Author:

BONNEAU LUDOVIC1,LE BLOAS JULIEN1,QUENTIN PHILIPPE1,MINKOV NIKOLAY2

Affiliation:

1. University Bordeaux 1 and CNRS-IN2P3, Center for Nuclear Studies of Bordeaux–Gradignan, Chemin du Solarium, BP 120, 33175 Gradignan, France

2. Institute of Nuclear Research and Nuclear Energy, Bulgarian Academy of Sciences, Tzarigradsko Chaussee Blvd. 72, BG–1784 Sofia, Bulgaria

Abstract

In self-consistent mean-field approaches, the description of odd-mass nuclei requires to break the time-reversal invariance of the underlying one-body hamiltonian. This induces a polarization of the even-even core to which the odd nucleon is added. To properly describe the pairing correlations (in T = 1 and T = 0 channels) in such nuclei, we implement the particle-number conserving Higher Tamm–Dancoff approximation with a residual δ interaction in each isospin channel by restricting the many-body basis to two-particle–two–hole excitations of pair type (nn, pp and np) on top of the Hartree–Fock solution. We apply this approach to the calculation of two ground-state properties of well-deformed nuclei |Tz| = 1 nuclei around 24 Mg and 48 Cr , namely the isovector odd-even binding-energy difference and the magnetic dipole moment, focusing on the impact of pairing correlations.

Publisher

World Scientific Pub Co Pte Lt

Subject

General Physics and Astronomy,Nuclear and High Energy Physics

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