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Kawaguchi, T. Kawamura, T. NIshizaka, T. Otsuka, T. Sato, T. Sumikama, X. F. Yang, Y. Ichikawa, Y. Ishibashi, Y. Kobayashi, Y. Ohtomo, Y. Shimizu, Y. Togano, Y. Tsunoda","submitted_at":"2018-10-18T04:17:26Z","abstract_excerpt":"Exotic nuclei are characterized by a number of neutrons (or protons) in excess relative to stable nuclei. Their shell structure, which represents single-particle motion in a nucleus, may vary due to nuclear force and excess neutrons, in a phenomenon called shell evolution. This effect could be counterbalanced by collective modes causing deformations of the nuclear surface. Here, we study the interplay between shell evolution and shape deformation by focusing on the magnetic moment of an isomeric state of the neutron-rich nucleus 75Cu. 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