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Nuclear moments of inertia and wobbling motions in triaxial superdeformed nuclei

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PHYSICAL REVIEW C
卷 69, 期 3, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevC.69.034325

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The wobbling motion excited on triaxial superdeformed nuclei is studied in terms of the cranked shell model plus random phase approximation. First, by calculating at a low rotational frequency the gamma dependence of the three moments of inertia associated with the wobbling motion, the mechanism of the appearance of the wobbling motion in positive- gamma nuclei is clarified theoretically-the rotational alignment of the pii(13/2) quasiparticle(s) is the essential condition. This indicates that the wobbling motion is a collective motion that is sensitive to the single-particle alignment. Second, we prove that the observed unexpected rotational-frequency dependence of the wobbling frequency is an outcome of the rotational-frequency dependent dynamical moments of inertia.

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