np-Pair Correlations in the Isovector Pairing Model

Author:

Pan FengORCID,He YingwenORCID,Dai Lianrong,Qi Chong,Draayer Jerry P.ORCID

Abstract

A diagonalization scheme for the shell model mean-field plus isovector pairing Hamiltonian in the O(5) tensor product basis of the quasi-spin SUΛ(2) ⊗ SUI(2) chain is proposed. The advantage of the diagonalization scheme lies in the fact that not only can the isospin-conserved, charge-independent isovector pairing interaction be analyzed, but also the isospin symmetry breaking cases. More importantly, the number operator of the np-pairs can be realized in this neutron and proton quasi-spin basis, with which the np-pair occupation number and its fluctuation at the J = 0+ ground state of the model can be evaluated. As examples of the application, binding energies and low-lying J = 0+ excited states of the even–even and odd–odd N∼Z ds-shell nuclei are fit in the model with the charge-independent approximation, from which the neutron–proton pairing contribution to the binding energy in the ds-shell nuclei is estimated. It is observed that the decrease in the double binding-energy difference for the odd–odd nuclei is mainly due to the symmetry energy and Wigner energy contribution to the binding energy that alter the pairing staggering patten. The np-pair amplitudes in the np-pair stripping or picking-up process of these N = Z nuclei are also calculated.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

Physics and Astronomy (miscellaneous),General Mathematics,Chemistry (miscellaneous),Computer Science (miscellaneous)

Reference59 articles.

1. Treatment of neutron-proton correlations

2. Hartree–Fock–Bogoliubov theory with applications to nuclei;Goodman;Adv. Nucl. Phys.,1979

3. Isovector pairing vibrations

4. Neutron-proton correlations in an exactly solvable model

5. Deuteron Transfer in N=Z Nuclei;Van Isacker;Phys. Rev. Lett.,2005

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