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Level structure of 191Os: Coexisting oblate and prolate configurations

  • H. G. Börner
  • , R. F. Casten
  • , I. Förster
  • , D. Lieberz
  • , P. Von Brentano
  • , S. J. Robinson
  • , T. Von Egidy
  • , G. Hlawatsch
  • , H. Lindner
  • , P. Geltenbort
  • , F. Hoyler
  • , H. Faust
  • , G. Colvin
  • , W. R. Kane
  • , M. MacPhail
  • Institut Laue-Langevin
  • Brookhaven National Laboratory
  • Universität zu Köln
  • Technical University of Munich

Research output: Contribution to journalArticlepeer-review

12 Scopus citations

Abstract

An extensive level scheme for the transitional nucleus 191Os has been constructed on the basis of (n, γ), (n, e-) and (d, t) reaction data. γ-rays following thermal capture and average resonance capture (ARC) were detected with pair spectrometers. Secondary γ-ray spectra were obtained with the GAMS bent crystal spectrometers. The high precision of the resultant energies was the critical factor in developing a level scheme on the basis of Ritz combinations. γγ coincidences were obtained from both primary and secondary transitions. Conversion electrons, detected with the BILL spectrometer, gave multipolarity information. The (d, t) reaction measured with a Q3D magnetic spectrometer gave additional information on the hole states in 191Os. A discussion of the resulting level scheme briefly reviews the fragmentation of negative-parity strength but focuses mostly on a rare example of an anti-aligned decoupled set of coexisting positive-parity states. For these, triaxial particle-plus-rotor calculations are carried out. Reasonable agreement is obtained and the calculations also explain the unusually strong population in (n, γ) of this set of mostly medium spin states.

Original languageEnglish
Pages (from-to)255-293
Number of pages39
JournalNuclear Physics, Section A
Volume534
Issue number2
DOIs
StatePublished - 18 Nov 1991

Keywords

  • Nuclear Reactions

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