4.7 Article

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

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PHYSICS LETTERS B
Volume 847, Issue -, Pages -

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ELSEVIER
DOI: 10.1016/j.physletb.2023.138249

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Excited states in Ga-62 and Ge-62 nuclei with Tz = 0, -1 were studied using direct reactions and fusion-evaporation reactions. New excited states were discovered and compared with theoretical predictions. In addition, the relationship between mirror and triplet energy differences was analyzed.
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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