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Phys. Rev. C 74, 024313 (2006) [14 pages]

Electromagnetic transition strengths in 156Dy

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O. Möller1, A. Dewald1, P. Petkov1,2, B. Saha1, A. Fitzler1, K. Jessen1, D. Tonev1,2, T. Klug1, S. Heinze1, J. Jolie1, P. von Brentano1, D. Bazzacco3, C. A. Ur3,*, E. Farnea3,4, M. Axiotis4, S. Lunardi3, G. de Angelis4, D. R. Napoli4, N. Marginean4, T. Martinez4, M. A. Caprio5, and R. F. Casten5
1Institut für Kernphysik der Universität zu Köln, D-50937 Köln, Germany
2Bulgarian Academy of Sciences, Institute for Nuclear Research and Nuclear Energy, BG-1784 Sofia, Bulgaria
3Dipartimento di Fisica and INFN, Sezione di Padova, Padova, Italy
4INFN, Laboratori Nazionali di Legnaro, Legnaro, Italy
5Wright Nuclear Structure Laboratory, Yale University, New Haven, Connecticut, USA

Received 8 May 2006; published 22 August 2006

Reliable and precise lifetimes of excited states in 156Dy were measured by means of the recoil distance Doppler-shift technique in the coincidence mode. The experiment was performed at the Laboratori Nazionali di Legnaro with the GASP array and the Cologne coincidence plunger apparatus using the reaction 124Sn(36S,4n)156Dy at a beam energy of 155 MeV. New values of the branching ratios of transitions depopulating the levels of the first excited band have been derived. The measured transition probabilities of 156Dy in the ground-state band and the first excited band as well as the energy spectra are compared to the predictions of the recently proposed X(5) model and to an interacting boson approximation fit. The comparison reveals a different behavior of the intraband transition strengths and indicates a possible coexistence of a normal deformed ground-state band and an X(5)-like first excited band. It also reveals that in 156Dy, the γ degree of freedom plays a more important role than it does in the well-established X(5) nuclei with N=90. A fit of the data using the general collective model suggests that a deeper collective potential V(β,γ) may also be a reason for the differences in the spectroscopic properties of 156Dy and those nuclei.

© 2006 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevC.74.024313
DOI:
10.1103/PhysRevC.74.024313
PACS:
21.10.Tg, 23.20.Lv, 27.70.+q

*On leave from NIPNE Bucharest.