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- W2067738412 abstract "A collective vector-boson model with broken SU(3) symmetry, in which the ground-state band and the lowest ensuremath{gamma} band belong to the same irreducible representation but are nondegenerate, is applied to several deformed even-even nuclei. The model description of ground and ensuremath{gamma} bands together with the corresponding $B(E2)$ transition probabilities is investigated within a broad range of SU(3) irreducible representations (ensuremath{lambda},ensuremath{mu}). The calculations show that the (ensuremath{lambda},ensuremath{mu}) characteristics of rotational nuclei depend to a great extent on the magnitude of the SU(3) splitting between the ground and ensuremath{gamma} bands. It is found that for weakly split spectra, the ground-ensuremath{gamma} band coupling scheme is realized relevantly within narrow regions of ``favored'' (ensuremath{lambda},ensuremath{mu}) multiplets, while in the cases of strong splitting a description in which the ground band is situated alone in an irreducible representation is favored. The obtained results are analyzed in terms of the band-mixing interactions. The possibility for a transition between the different collective SU(3) schemes is discussed." @default.
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- W2067738412 date "1997-05-01" @default.
- W2067738412 modified "2023-10-10" @default.
- W2067738412 title "Broken SU(3) symmetry in deformed even-even nuclei" @default.
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- W2067738412 doi "https://doi.org/10.1103/physrevc.55.2345" @default.
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