Abstract

The structure of the particle-hole nucleus ${}^{132}\mathrm{Sb}$ provides a direct source of information on the effective neutron-proton interaction in the ${}^{132}\mathrm{Sn}$ region. We have performed a shell-model calculation for this nucleus using a realistic effective interaction derived from the Bonn A nucleon-nucleon potential. The results are in very good agreement with the experimental data evidencing the reliability of our effective interaction matrix elements both with isospin $T=1$ and $T=0.$

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