High spin spectroscopy and shape coexistence inAs73

PHYSICAL REVIEW C(2015)

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摘要
High spin states in As-73 have been investigated through the fusion-evaporation reaction Ni-64(C-12, p2n)As-73 with an incident beam energy of 55 MeV. The level scheme has been extended up to J(pi) = (37/2(-)) and excitation energy similar to 8.7 MeV with the addition of 30 new gamma-ray transitions. The microscopic origins of the observed positive- and negative-parity band structures are discussed in the context of the particle rotor model. Nucleon alignments and shape evolution with increasing angular momentum are discussed in the framework of the cranked shell model and relativistic mean-field calculations. The results offer insight into the nature of the observed band structures and indicate prolate-oblate shape coexistence between positive- and negative-parity bands at low spin.
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