Low-lying structure and shape evolution in neutron-rich Se isotopes

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Abstract

Neutron-rich Se88,90,92,94 isotopes were studied via in-beam γ-ray spectroscopy after nucleon removal reactions at intermediate energies at the Radioactive Isotope Beam Factory. Based on γ-γ coincidence analysis, low-lying excitation level schemes are proposed for these nuclei, including the 21+, 41+ states and 22+ states at remarkably low energies. The low-lying 22+ states, along with other features, indicate triaxiality in these nuclei. The experimental results are in good overall agreement with self-consistent beyond-mean-field calculations based on the Gogny D1S interaction, which suggests both triaxial degree of freedom and shape coexistence playing important roles in the description of intrinsic deformations in neutron-rich Se isotopes.

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Chen, S., Doornenbal, P., Obertelli, A., Rodríguez, T. R., Authelet, G., Baba, H., … Xu, Z. (2017). Low-lying structure and shape evolution in neutron-rich Se isotopes. Physical Review C, 95(4). https://doi.org/10.1103/PhysRevC.95.041302

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