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arXiv:2503.01398·v1·Nuclear Theory

Effective proton-neutron interaction in mirror nuclei

Y. M. Xing · Y. F. Luo · K. H. Li · Y. H. Zhang · J. G. Li · M. Wang · Yu. A. Litvinov · K. Blaum · X. L. Yan · T. Liao · M. Zhang · X. Zhou

Abstract

Effective proton-neutron interactions, , in mirror nuclei are systematically analyzed using the ground-state atomic masses. A mirror symmetry of is found for bound nuclei with a standard deviation of keV. However, this mirror symmetry is apparently broken for some mirror-nuclei pairs when a proton-unbound nucleus is involved in extracting the values. Such a mirror-symmetry breaking is attributed to the Thomas-Ehrman shift of the proton-unbound nucleus and investigated by using the Gamow shell model. It is concluded that the Thomas-Ehrman shift originates mainly from reduced Coulomb energies in the proton-unbound nuclei due to the extended radial density distribution of valence protons.

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