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New β -decaying state in Bi 214

AutorAndel, B.; Van Duppen, P.; Andreyev, A. N.; Blazhev, A.; Grawe, H.; Lică, R.; Naïdja, H.; Stryjczyk, M.; Algora, Alejandro CSIC ORCID ; Antalic, S.; Barzakh, A.; Marín Benito, Jesús María CSIC ORCID ; Benzoni, G.; Berry, T.; García Borge, María José CSIC ORCID; Chrysalidis, K.; Clisu, C.; Costache, C.; Cubiss, J.G.; De Witte, H.; Fedorov, D.V.; Fedosseev, V.N.; Fraile, Luis M. CSIC ORCID; Fynbo, H.O.U.; Greenlees, P.T.; Harkness-Brennan, L.J.; Huyse, M.; Illana, A. CSIC ORCID; Jolie, J.; Judson, D.S.; Konki, J.; Lazarus, I.; Madurga, M.; Marginean, N.; Marginean, R.; Mihai, C.; Marsh, B.A.; Molkanov, P.; Mosat, P.; Murias, J. R.; Nácher, Enrique CSIC ORCID; Negret, A.; Page, R.D.; Pascu, S.; Perea, Ángel CSIC ORCID; Pucknell, V.; Rahkila, P.; Rapisarda, E.; Rezynkina, K.; Sánchez-Tembleque, V.; Schomacker, K.; Seliverstov, M. D.; Sotty, C.; Stan, L.; Sürder, C.; Tengblad, Olof CSIC ORCID ; Vedia, V.; Viñals, S. CSIC ORCID CVN; Wadsworth, R.; Warr, N.
Fecha de publicación2-nov-2021
EditorAmerican Physical Society
CitaciónPhysical Review - Section C - Nuclear Physics 104: 054301 (2021)
ResumenA new β-decaying state in Bi214 has been identified at the ISOLDE Decay Station at the CERN-ISOLDE facility. A preferred Iπ=(8-) assignment was suggested for this state based on the β-decay feeding pattern to levels in Po214 and shell-model calculations. The half-life of the Iπ=(8-) state was deduced to be T1/2=9.39(10) min. The deexcitation of the levels populated in Po214 by the β decay of this state was investigated via γ-γ coincidences and a number of new levels and transitions was identified. Shell-model calculations for excited states in Bi214 and Po214 were performed using two different effective interactions: the H208 and the modified Kuo-Herling particle interaction. Both calculations agree on the interpretation of the new β-decaying state as an Iπ=8- isomer and allow for tentative assignment of shell-model states to several high-spin states in Po214.
Descripción13 pags., 7 figs., 3 tabs.
URIhttp://hdl.handle.net/10261/260812
DOI10.1103/PhysRevC.104.054301
ISSN2469-9985
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