Abstract

The charge symmetry-breaking potentials including the effects of pseudoscalar (\ensuremath{\pi}-\ensuremath{\eta}) and (\ensuremath{\pi}-\ensuremath{\eta}'), and vector (\ensuremath{\rho}-\ensuremath{\omega}) meson in a series of mirror nuclei are examined. The computed Coulomb energy differences along with the present charge symmetry-breaking effects provide a reasonably accurate description of the binding energy differences between mirror nuclei.

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