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β decay of 129Cd and excited states in 129In

AutorTaprogge, J. ; Jungclaus, Andrea ; Grawe, H.; Gadea, Andrés ; Gargano, A.; Ilieva, S.; Kondev, F.G.; Kröll, T.; Lane, G.J.; Montaner-Pizá, A. ; Moschner, K.; Mücher, D.; Naqvi, F.; Niikura, M.; Nishibata, H.; Odahara, A.; Orlandi, R. ; Patel, Z.; Podolyák, Zs.; Wendt, A.
Fecha de publicación26-may-2015
EditorAmerican Physical Society
CitaciónPhysical Review C - Nuclear Physics 91: 054324 (2015)
Resumen©2015 American Physical Society. The β decay of 129Cd, produced in the relativistic fission of a 238U beam, was experimentally studied at the RIBF facility at the RIKEN Nishina Center. From the γ radiation emitted after the β decays, a level scheme of 129In was established comprising 31 excited states and 69 γ -ray transitions. The experimentally determined level energies are compared to state-of-the-art shell-model calculations. The half-lives of the two β-decaying states in 129Cd were deduced and the β feeding to excited states in 129In were analyzed. It is found that, as in most cases in the Z < 50, N 82 region, both decays are dominated by the ν0g7/2 → π0g9/2 Gamow–Teller transition, although the contribution of first-forbidden transitions cannot be neglected.
DescripciónJ. Taprogge et al.; 11 pags.; 8 figs.; 2 tabs.; PACS number(s): 23.20.Lv, 23.40.−s, 21.60.Cs, 27.60.+j
Versión del editorhttp://dx.doi.org/10.1103/PhysRevC.91.054324
Identificadoresdoi: 10.1103/PhysRevC.91.054324
issn: 1089-490X
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