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Backbending Region Study in 160, 162Dy using Incomplete Fusion Reactions

Authors :
Jungclaus, Andrea
Binder, B.
Dietrich, A.
Härtlein, T.
Bauer, H.
Gund, Ch.
Pansegrau, D.
Schwalm, D.
Egido, J.L.
Sun, Y.
Bazzacco, D.
De Angelis, G.
Farnea, E.
Gadea, Andrés
Lunardi, S.
Napoli, D.R.
Rossi-Alvarez, C.
Ur, C.
Hagemann, G. B.
Federal Ministry of Education and Research (Germany)
German Research Foundation
Source :
Digital.CSIC. Repositorio Institucional del CSIC, instname
Publication Year :
2002
Publisher :
AMER PHYSICAL SOC, ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA - Internet: http://www.aps.org, 2002.

Abstract

18 págs.; 17 figs.; 3 tabs. ; PACS number(s): 23.20.Lv, 23.20.En, 27.70.1q, 21.60.Cs<br />The incomplete fusion reactions 7Li→158,160Gd at beam energies of 8 MeV/nucleon have been used to study the first band crossing region in the heavy stable Dy isotopes 160,162Dy. The γ rays were detected in the GASP spectrometer in coincidence with fast charged particles detected in the ISIS silicon ball. We succeeded to observe the first backbending in 162Dy at a crossing frequency of ℏ ω ≈ 350 keV, a value much higher than expected from other nuclei in this mass region. Moreover, for the first time in a nucleus with a very large interaction strength, the yrare band in 160Dy could be established up to rather high spin (I= 20ℏ) allowing for a precise determination of the interaction strength between the ground state and the Stockholm band, |Vg-S| = 219(2) keV. Together with |Vg-S| = 14(2) kev determined for the corresponding interaction in 162Dy, a full oscillation of the strengths from one node to the next could be observed within an isotopic chain. In addition to the ground state and Stockholm bands, many other known bands in the two nuclei were considerably extended to higher spin and the experimental results are compared to calculations within the projected shell model. ©2002 The American Physical Society<br />This work has been supported by Deutsches Bundesministerium fur Bildung, Wissenschaft, Forschung und Technologie (BMBF). A.J. acknowledges support by the Deutsche Forschungsgemeinschaft (DFG).

Details

Language :
English
Database :
OpenAIRE
Journal :
Digital.CSIC. Repositorio Institucional del CSIC, instname
Accession number :
edsair.dedup.wf.001..e4cd690266eef50938351d2be9579db5