βdecay ofCd129and excited states inIn129
Author(s) -
J. Taprogge,
A. Jungclaus,
H. Grawe,
S Nishimura,
P. Doornenbal,
G. Lorusso,
G. S. Simpson,
P.-A. Söderström,
T. Sumikama,
Z. Y. Xu,
H. Baba,
F. Browne,
N. Fukuda,
R. Gernhäuser,
G. Gey,
N. Inabe,
T. Isobe,
H. S. Jung,
D. Kameda,
G. D. Kim,
Yong Kyun Kim,
I. Kojouharov,
T. Kubo,
N. Kurz,
Y. K. Kwon,
Z. Li,
H. Sakuraï,
H. Schaffner,
Katja Steiger,
Hiroaki Suzuki,
H. Takeda,
Zs. Vajta,
H. Watanabe,
J. Wu,
A. Yagi,
K. Yoshinaga,
G. Benzoni,
S. Bönig,
K. Y. Chae,
L. Coraggio,
A. Covello,
J. M. Daugas,
F. Drouet,
A. Gadea,
A. Gargano,
S. Ilieva,
F. G. Kondev,
T. Kröll,
G. J. Lane,
A. Montaner-Pizá,
K. Moschner,
D. Mücher,
F. Naqvi,
M. Nııkura,
H. Nıshıbata,
A. Odahara,
R. Orlandi,
Z. Patel,
Zs. Podolyák,
A. Wendt
Publication year - 2015
Publication title -
physical review c
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.679
H-Index - 235
eISSN - 1089-490X
pISSN - 0556-2813
DOI - 10.1103/physrevc.91.054324
Subject(s) - excited state , physics , atomic physics , nuclear physics
The beta decay of Cd-129, produced in the relativistic fission of a U-238 beam, was experimentally studied at the RIBF facility at the RIKEN Nishina Center. From the gamma radiation emitted after the beta decays, a level scheme of In-129 was established comprising 31 excited states and 69 gamma-ray transitions. The experimentally determined level energies are compared to state-of-the-art shell-model calculations. The half-lives of the two beta-decaying states in Cd-129 were deduced and the beta feeding to excited states in In-129 were analyzed. It is found that, as in most cases in the Z ? 50, N ?= 82 region, both decays are dominated by the nu 0g(7/2) -? pi 0g(9/2) Gamow-Teller transition, although the contribution of first-forbidden transitions cannot be neglected.We thank the staff of the RIKEN Nishina Center accelerator complex for providing us very stable beams throughout the experiment with high intensities. We acknowledge the EUROBALL Owners Committee for the loan of germanium detectors and the PreSpec Collaboration for the readout electronics of the cluster detectors. This work was supported by the Spanish Ministerio de Ciencia e Innovacion under contracts FPA2009-13377-C02 and FPA2011-29854-C04, the Generalitat Valenciana (Spain) under grant PROMETEO/2010/101, the National Research Foundation of Korea (NRF) grant funded by the Korea government (MEST) (No. NRF-2012R1A1A1041763), the Priority Centers Research Program in Korea (2009-0093817), OTKA contract number K-100835, JSPS KAKENHI (Grant No. 25247045), the European Commission through the Marie Curie Actions call FP7-PEOPLE-2011-IEF under Contract No. 300096, the US Department of Energy, Office of Nuclear Physics, under Contract No. DE-AC02-06CH11357, the "RIKEN foreign research program," and the German BMBF(No. 05P12RDCIA and 05P12RDNUP) and HIC for FAIR
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