arXiv · 1605.03784
In-beam spectroscopy of medium- and high-spin states in $^{133}$Ce
Abstract
Medium and high-spin states in $^{133}$Ce were investigated using the $^{116}$Cd($^{22}$Ne, $5n$) reaction and the Gammasphere array. The level scheme was extended up to an excitation energy of $\sim22.8$ MeV and spin 93/2 . Eleven bands of quadrupole transitions and two new dipole bands are identified. The connections to low-lying states of the previously known, high-spin triaxial bands were firmly established, thus fixing the excitation energy and, in many cases, the spin parity of the levels. Based on comparisons with cranked Nilsson-Strutinsky calculations and tilted axis cranking covariant density functional theory, it is shown that all observed bands are characterized by pronounced triaxiality. Competing multiquasiparticle configurations are found to contribute to a rich variety of collective phenomena in this nucleus.
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A. D. Ayangeakaa, U. Garg, C. M. Petrache, S. Guo, P. W. Zhao, J. T. Matta, B. K. Nayak, D. Patel, R. V. F. Janssens, M. P. Carpenter, C. J. Chiara, F. G. Kondev, T. Lauritsen, D. Seweryniak, S. Zhu, S. S. Ghugre, R. Palit. 2016-05-12. In-beam spectroscopy of medium- and high-spin states in $^{133}$Ce. https://doi.org/10.1103/physrevc.93.054317
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