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Observation of isomeric decays in the r-process waiting-point nucleus 130Cd82
Authors:Jungclaus A  Cáceres L  Górska M  Pfützner M  Pietri S  Werner-Malento E  Grawe H  Langanke K  Martínez-Pinedo G  Nowacki F  Poves A  Cuenca-García J J  Rudolph D  Podolyak Z  Regan P H  Detistov P  Lalkovski S  Modamio V  Walker J  Bednarczyk P  Doornenbal P  Geissel H  Gerl J  Grebosz J  Kojouharov I  Kurz N  Prokopowicz W  Schaffner H  Wollersheim H J  Andgren K  Benlliure J  Benzoni G  Bruce A M  Casarejos E  Cederwall B  Crespi F C L  Hadinia B  Hellström M  Hoischen R  Ilie G  Jolie J  Khaplanov A  Kmiecik M  Kumar R  Maj A  Mandal S  Montes F  Myalski S  Simpson G S  Steer S J  Tashenov S  Wieland O
Affiliation:Departamento de Física Teórica, Universidad Autónoma de Madrid, E-28049 Madrid, Spain.
Abstract:The gamma decay of excited states in the waiting-point nucleus (130)Cd(82) has been observed for the first time. An 8(+) two-quasiparticle isomer has been populated both in the fragmentation of a (136)Xe beam as well as in projectile fission of 238U, making (130)Cd the most neutron-rich N = 82 isotone for which information about excited states is available. The results, interpreted using state-of-the-art nuclear shell-model calculations, show no evidence of an N = 82 shell quenching at Z = 48. They allow us to follow nuclear isomerism throughout a full major neutron shell from (98)Cd(50) to (130)Cd(82) and reveal, in comparison with (76)Ni(48) one major proton shell below, an apparently abnormal scaling of nuclear two-body interactions.
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