Isospin symmetry in the T=1, A=62 triplet

K. Wimmer, P. Ruotsalainen, S. M. Lenzi,A. Poves, T. Huyuk, F. Browne, P. Doornenbal, T. Koiwai, T. Arici, K. Auranen,M. A. Bentley, M. L. Cortes,C. Delafosse,T. Eronen,Z. Ge,T. Grahn,P. T. Greenlees, A. Illana, N. Imai, H. Joukainen, R. Julin, A. Jungclaus, H. Jutila, A. Kankainen, N. Kitamura, B. Longfellow,J. Louko, R. Lozeva, M. Luoma, B. Mauss,D. R. Napoli, M. Niikura, J. Ojala, J. Pakarinen, X. Pereira-Lopez, P. Rahkila, F. Recchia,M. Sandzelius, J. Saren, R. Taniuchi, H. Tann, S. Uthayakumaar, J. Uusitalo, V. Vaquero,R. Wadsworth, G. Zimba, R. Yajzey

PHYSICS LETTERS B(2023)

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摘要
Excited states in the Tz = 0, -1 nuclei Ga-62 and Ge-62 were populated in direct reactions of relativistic radioactive ion beams at the RIBF. Coincident gamma rays were measured with the DALI2(+) array and uniquely assigned to the A = 62 isobars. In addition, Ge-62 was also studied independently at JYFL-ACCLAB using the Mg-24(Ca-40,2n)Ge-62 fusion-evaporation reaction. The first excited T = 1, J(pi) = 2(+) states in Ga-62 and Ge-62 were identified at 979(1) and 965(1) keV, respectively, resolving discrepant interpretations in the literature. States beyond the first 2+ state in Ge-62 were also identified for the first time in the present work. The results are compared with shell-model calculations in the f p. model space. Mirror and triplet energy differences are analyzed in terms of individual charge-symmetry and charge-independence breaking contributions. The MED results confirm the shrinkage of the p-orbits' radii when they are occupied by at least one nucleon on average.
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symmetry,triplet
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