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arXiv:2112.02844·v2·Nuclear Theory

The roles of three-nucleon force and continuum coupling in mirror symmetry breaking of oxygen mass region

S. Zhang · Y. Z. Ma · J. G. Li · B. S. Hu · Q. Yuan · Z. H. Cheng · F. R. Xu

Abstract

With both three-nucleon force and continuum coupling included, we have developed a self-consistent {\it ab initio} Gamow shell model within the Gamow Hartree-Fock (GHF) basis obtained by the realistic interaction itself. With the chiral two-nucleon NLO and three-nucleon NLO interactions, the Gamow shell model has been applied to the mirror systems of neutron-rich isotopes and proton-rich isotones, giving good agreements with data in binding energies, dripline positions and excitation spectra. The GHF calculated that the , and orbitals are resonances. The resonance states and their interplay with nonresonant continua play a crucial role in the descriptions of nuclei around driplines. Excitation spectra and Thomas-Ehrman shifts observed can be better described when both three-nucleon force and continuum coupling are considered in calculations. The three-nucleon force and continuum coupling produce a combined effect on the Thomas-Ehrman shift, e.g., for the resonance level of Na. The calculations help the understandings of related nuclear astrophysical processes.

Comments: 7 pages, 5 figures

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