Deformation driving intruder orbitals in Kr-77

High-spin states in Kr-77 were identified via analysis of prompt gamma-gamma coincidences in the Ni-58(Si-29,2 alpha 2p) reaction at 128 MeV at the Gammasphere facility. Evaporation channel selection was achieved using the 95 element Microball charged-particle detector. 27 new states and 42 new tran...

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Veröffentlicht in:Physical review. C, Nuclear physics Nuclear physics, 1997-08, Vol.56 (2), p.772
Hauptverfasser: Sylvan, G N, Doring, J, Johns, G D, Tabor, S L, Gross, C J, Baktash, C, Jin, H Q, Stracener, D W, Hua, P F, Korolija, M, LaFosse, D R, Sarantites, D G, Cristancho, F, Landulfo, E, Saladin, J X, Cederwall, Bo, Lee, I Y, Macchiavelli, A O, Rathbun, W, VanderMolen, A
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Sprache:eng
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Zusammenfassung:High-spin states in Kr-77 were identified via analysis of prompt gamma-gamma coincidences in the Ni-58(Si-29,2 alpha 2p) reaction at 128 MeV at the Gammasphere facility. Evaporation channel selection was achieved using the 95 element Microball charged-particle detector. 27 new states and 42 new transitions were found, The positive-parity bands were confirmed and the alpha=-1/2 band extended to 39/2(+). The negative-parity signature pair was extended to 31/2(-) and 37/2(-). Two new high-lying negative-parity bands were found extending from a state of spin I = 15/2 and energy 2.6 MeV to 17.4 MeV at I = (55/2). The new bands appear highly deformed and become yrast at high spin. A three-quasiparticle structure based on deformation driving, low-K unique-parity and intruder orbitals is suggested for them.
ISSN:0556-2813
1089-490X
DOI:10.1103/PhysRevC.56.772