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High-spin states in 163Lu

Identifieur interne : 000C87 ( Main/Corpus ); précédent : 000C86; suivant : 000C88

High-spin states in 163Lu

Auteurs : W. Schmitz ; C. X. Yang ; H. Hübel ; A. P. Byrne ; R. Müsseler ; N. Singh ; K. H. Maier ; A. Kuhnert ; R. Wyss

Source :

RBID : ISTEX:4383D3947D9A609E2942BEBFE1F9CC6409C2B470

Abstract

High-spin states in 163Lu were investigated by in-beam γ-ray spectroscopy using the multidetector array OSIRIS. One decoupled and two strongly coupled bands were observed up to high spins and a fragment of a second decoupled band was established. The band structures are connected to previously known low-spin states. An anomalously low-frequency second band crossing is observed in one of the strongly coupled bands. Band crossing frequencies and aligned angular momenta are interpreted within the framework of the cranked shell model. B(M1)/B(E2) ratios are determined and compared to calculated values. Evidence is presented that the decoupled band may have a much larger deformation than the coupled bands. We suggest that it is built on the proton i 13 2 intruder configuration.

Url:
DOI: 10.1016/0375-9474(92)90238-F

Links to Exploration step

ISTEX:4383D3947D9A609E2942BEBFE1F9CC6409C2B470

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<abstract>High-spin states in 163Lu were investigated by in-beam γ-ray spectroscopy using the multidetector array OSIRIS. One decoupled and two strongly coupled bands were observed up to high spins and a fragment of a second decoupled band was established. The band structures are connected to previously known low-spin states. An anomalously low-frequency second band crossing is observed in one of the strongly coupled bands. Band crossing frequencies and aligned angular momenta are interpreted within the framework of the cranked shell model. B(M1)/B(E2) ratios are determined and compared to calculated values. Evidence is presented that the decoupled band may have a much larger deformation than the coupled bands. We suggest that it is built on the proton i 13 2 intruder configuration.</abstract>
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<note>The work was supported financially by the Bundesminister für Forschung und Technologie BRD (contract No. 06BN181) and by the Minister für Wissenschaft und Forschung NRW, as well as by the US Department of Energy (contract No. DE-FG05-87ER40361)</note>
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<note type="biography">The authors wish to thank Drs. G.B. Hagemann, R. Bengtsson and S. Frauendorf for helpful discussions. One of us (W.S.) wants to thank the Cusanuswerk for a fellowship and one of us (N.S.) wants to thank the Heinrich Hertz Foundation for financial support. A.P.B. gratefully acknowledges the support from the A.v. Humboldt Foundation.</note>
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<affiliation>The authors wish to thank Drs. G.B. Hagemann, R. Bengtsson and S. Frauendorf for helpful discussions. One of us (W.S.) wants to thank the Cusanuswerk for a fellowship and one of us (N.S.) wants to thank the Heinrich Hertz Foundation for financial support. A.P.B. gratefully acknowledges the support from the A.v. Humboldt Foundation.</affiliation>
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<affiliation>The authors wish to thank Drs. G.B. Hagemann, R. Bengtsson and S. Frauendorf for helpful discussions. One of us (W.S.) wants to thank the Cusanuswerk for a fellowship and one of us (N.S.) wants to thank the Heinrich Hertz Foundation for financial support. A.P.B. gratefully acknowledges the support from the A.v. Humboldt Foundation.</affiliation>
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<affiliation>Permanent address: Department of Physics, Panjab University, Chandigarh 160014, India.</affiliation>
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<p>High-spin states in 163Lu were investigated by in-beam γ-ray spectroscopy using the multidetector array OSIRIS. One decoupled and two strongly coupled bands were observed up to high spins and a fragment of a second decoupled band was established. The band structures are connected to previously known low-spin states. An anomalously low-frequency second band crossing is observed in one of the strongly coupled bands. Band crossing frequencies and aligned angular momenta are interpreted within the framework of the cranked shell model. B(M1)/B(E2) ratios are determined and compared to calculated values. Evidence is presented that the decoupled band may have a much larger deformation than the coupled bands. We suggest that it is built on the proton i 13 2 intruder configuration.</p>
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<ce:note-para>The work was supported financially by the Bundesminister für Forschung und Technologie BRD (contract No. 06BN181) and by the Minister für Wissenschaft und Forschung NRW, as well as by the US Department of Energy (contract No. DE-FG05-87ER40361)</ce:note-para>
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<ce:title>High-spin states in
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<ce:textfn>Institut für Strahlen-und Kernphysik, Universität Bonn, Nussallee 14–16, D-5300 Bonn, Germany</ce:textfn>
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<ce:note-para>The authors wish to thank Drs. G.B. Hagemann, R. Bengtsson and S. Frauendorf for helpful discussions. One of us (W.S.) wants to thank the Cusanuswerk for a fellowship and one of us (N.S.) wants to thank the Heinrich Hertz Foundation for financial support. A.P.B. gratefully acknowledges the support from the A.v. Humboldt Foundation.</ce:note-para>
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<ce:note-para>Permanent address: Institute of Atomic Energy, P.O. Box 275, Beijing, P.R. China.</ce:note-para>
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<ce:note-para>Permanent address: Department of Nuclear Physics, Australian National University, G.P.O. Box 4, Canberra, Act 2601, Australia.</ce:note-para>
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<ce:note-para>Permanent address: Department of Physics, Panjab University, Chandigarh 160014, India.</ce:note-para>
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<ce:note-para>Permanent address: Lawrence Livermore National Laboratory, P.O. Box 808, Livermore CA 94550L-396, USA.</ce:note-para>
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<ce:textfn>Joint Institute for Heavy-Ion Research, Oak Ridge, TN 37831, USA</ce:textfn>
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<ce:simple-para>High-spin states in
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<ce:italic>B</ce:italic>
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<abstract lang="en">High-spin states in 163Lu were investigated by in-beam γ-ray spectroscopy using the multidetector array OSIRIS. One decoupled and two strongly coupled bands were observed up to high spins and a fragment of a second decoupled band was established. The band structures are connected to previously known low-spin states. An anomalously low-frequency second band crossing is observed in one of the strongly coupled bands. Band crossing frequencies and aligned angular momenta are interpreted within the framework of the cranked shell model. B(M1)/B(E2) ratios are determined and compared to calculated values. Evidence is presented that the decoupled band may have a much larger deformation than the coupled bands. We suggest that it is built on the proton i 13 2 intruder configuration.</abstract>
<note>The work was supported financially by the Bundesminister für Forschung und Technologie BRD (contract No. 06BN181) and by the Minister für Wissenschaft und Forschung NRW, as well as by the US Department of Energy (contract No. DE-FG05-87ER40361)</note>
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