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Double charge-exchange phonon states

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We study double charge-exchange phonon states in neutron-rich nuclei, in particular the double isobaric analog states and the double Gamow-Teller excitations, induced by the double isospin operator ∑ , =1 −⁡( )⁢ −⁡( ) and spin-isospin operator ∑ , =1 ⁡( )⁢ −⁡( )⁢ ⁡( )⁢ −⁡( ), respectively. We employ quartic commutator relations to evaluate the average energies DIAS−2⁢ IAS and DGTR− DIAS−2⁢( GTR− IAS), and conventional double commutator relations to evaluate the average energies of GTR− IAS and IAS. We have found that the corrections from quartic commutators follow the approximate laws: DIAS−2⁢ IAS≈⁢ −1/3MeV and DGTR− DIAS−2⁢( GTR− IAS)≈16⁢ −1MeV. While the former is dominated by direct Coulomb effects because Coulomb exchange cancels out to some extent with isospin symmetry breaking contributions originated from the nuclear strong force, the latter is sensitive to the difference in strength between the spin and spin-isospin channels of the strong interaction.

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ROCA MAZA, Xavier, SAGAWA, Hiroyuki and COLÒ, Gianluca. Double charge-exchange phonon states. Physical Review C. 2020. ISSN 2469-9985. [consulted: 23 of May of 2026]. Available at: https://hdl.handle.net/2445/215774

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