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New Band Structures and an Unpaired Crossing in 78Kr

Sun, H. (author)
Florida State University
Doring, J. (author)
Florida State University
Johns, G. D. (author)
Florida State University
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Kaye, R. A. (author)
Florida State University
Solomon, G. Z. (author)
Florida State University
Tabor, S. L. (author)
Florida State University
Devlin, M. (author)
Washington University in St. Louis
LaFosse, D. R. (author)
Washington University in St. Louis
Lerma, F. (author)
Washington University in St. Louis
Sarantites, D. G. (author)
Washington University in St. Louis
Baktash, C. (author)
Oak Ridge National Laboratory
Rudolph, Dirk (author)
Oak Ridge National Laboratory
Yu, C. H. (author)
Oak Ridge National Laboratory
Lee, I. Y. (author)
Lawrence Berkeley National Laboratory
Macchiavelli, A. O. (author)
Lawrence Berkeley National Laboratory
Birriel, I. (author)
University of Pittsburgh
Saladin, J. X. (author)
University of Pittsburgh
Winchell, D. F. (author)
University of Pittsburgh
Wood, V. Q. (author)
University of Pittsburgh
Ragnarsson, I. (author)
Lund University,Lunds universitet,Matematisk fysik,Fysiska institutionen,Institutioner vid LTH,Lunds Tekniska Högskola,Mathematical Physics,Department of Physics,Departments at LTH,Faculty of Engineering, LTH
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Florida State University Washington University in St Louis (creator_code:org_t)
1999
1999
English.
In: Physical Review C (Nuclear Physics). - 0556-2813. ; 59:2, s. 655-664
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • High-spin states in Kr-78 were studied using the Ni-58(Na-23,3p) reaction at 70 MeV and the Ni-58(Si-23,alpha 4p) reaction at 130 MeV. Prompt gamma-gamma coincidences were measured using the Pitt-FSU detector array and the GAMMASPHERE-MICROBALL array. Results from these experiments have led to 26 new excitation levels, some of which have been grouped into 3 new bands. Spins were assigned based on directional correlations of oriented nuclei. Two of the new negative-parity bands appear to form a signature-partner pair based on a two-quasineutron structure, in contrast to the previously known two-quasiproton negative-parity bands. A forking has been observed at the 24(+) state in the yrast band, which calculations suggest may result from an unpaired crossing. The available evidence suggests oblate shapes in the yrast band coexist with prolate shapes in the negative-parity bands. [S0556-2813(99)04602-6].

Subject headings

NATURVETENSKAP  -- Fysik -- Subatomär fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Subatomic Physics (hsv//eng)

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art (subject category)
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