Low-Spin States In Ge-80 Populated In The Beta Decay Of The Ga-80 3(-) Isomer

S. Sekal,L. M. Fraile,R. Lica, M. J. G. Borge,W. B. Walters, A. Aprahamian, C. Benchouk,C. Bernards,J. A. Briz,B. Bucher, C. J. Chiara, Z. Dlouhy, I Gheorghe, D. G. Ghita,P. Hoff,J. Jolie, U. Koster,W. Kurcewicz, H. Mach, N. Marginean,R. Marginean, Z. Meliani,B. Olaizola, V Paziy,J. M. Regis, M. Rudigier, T. Sava,G. S. Simpson, M. Stanoiu, L. Stroe

PHYSICAL REVIEW C(2021)

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摘要
The structure of Ge-80 has been investigated at the ISOLDE facility at CERN. A previous study reported for the first time a low-lying 0(2)(+) intruder state at 639 keV, based on the coincidence with a previously unobserved 1764-keV gamma ray, and suggested it as evidence for shape coexistence in Ge-80. We used the beta decay from the 3(-) 22.4-keV state in Ga-80 to enhance the population of low-spin states in Ge-80, including any excited 0(+) level, and gamma gamma coincidences to investigate it. We observed a 1764-keV gamma ray in coincidence with strong transitions in Ge-80, thus not feeding the proposed 639-keV 0(2)(+). No connecting transitions from previously known levels to the 639-keV and 2403-keV 2(3)(+) states could be established either. Shell-model calculations for Ge isotopes and N = 48 isotones were performed. They succeed to explain most of the experimental levels, but fail to reproduce the presence of a 0(2)(+) state below approximate to 1200 keV in Ge-80. Our experimental findings and shell-model calculations are difficult to reconcile with a very low-lying 0(2)(+) state in Ge-80.
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