Collective treatment of the isovector pair correlations. Boson representation

Abstract

The theoretical approach to consideration of the Hamiltonian with pairing forces using a technique of the finite boson representation is developed. It is shown that a simultaneous description of the pairing vibrational state in 56Ni and the pairing rotational states with T=0 in the neighboring N=Z nuclei is possible if the pairing Hamiltonian takes into account only isovector monopole pairing. However, the calculated energies of the pairing rotational states of N=Z nuclei removed from 56Ni by 12 and more nucleons exceed significantly the experimental values. The possible reason of this discrepancy is discussed.

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