Description of neutron-rich odd-mass krypton isotopes within the interacting boson-fermion model based on the Gogny energy density functional

dc.contributor.authorK. Nomura
dc.contributor.authorR. Rodriguez-Guzman
dc.contributor.authorL. M. Robledo
dc.date.accessioned2025-08-06T10:32:45Z
dc.date.available2025-08-06T10:32:45Z
dc.date.issued2018
dc.description.abstractThe low‑lying structure of neutron‑rich odd‑mass Kr isotopes (⁸⁷–⁹⁵Kr) is studied within the interacting boson‑fermion model (IBFM) based on the Gogny‑D1M energy density functional. The (β, γ)-deformation energy surfaces, spherical single-particle energies, and occupation probabilities of the odd-mass systems are computed via the constrained Hartree‑Fock‑Bogoliubov approximation. These microscopic inputs determine most of the IBFM Hamiltonian parameters; the remaining coupling constants are tailored to experimental spectra for each studied isotope. The model predicts a gradual structural evolution of collectivity matching trends observed in neighboring even–even Kr isotopes.
dc.identifier.citationNomura, K.; Rodríguez-Guzmán, R.; Robledo, L. M. (2018). Description of neutron-rich odd-mass krypton isotopes within the interacting boson-fermion model based on the Gogny energy density functional. Physical Review C, 97(6): 064313. DOI: 10.1103/PhysRevC.97.064313
dc.identifier.urihttps://nur.nu.edu.kz/handle/123456789/9094
dc.language.isoen
dc.subjectneutron-rich odd-mass krypton isotopes
dc.subjectinteracting boson-fermion model (IBFM)
dc.subjectGogny-D1M energy density functional
dc.subjectHartree-Fock-Bogoliubov constraint
dc.subjectnuclear shape evolution
dc.subjectcollectivity
dc.titleDescription of neutron-rich odd-mass krypton isotopes within the interacting boson-fermion model based on the Gogny energy density functional
dc.typeArticle

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