Abstract

Excited states of the nuclei 83Br and 85Rb were populated in the reactions 82Se(7Li,α2n) and 82Se(7Li,4n), respectively, using the 7Li beams of the FN tandem accelerator in Cologne (E = 32 MeV) and of the 120 cm cyclotron in Rossendorf (E = 35 MeV). Gamma-gamma-particle coincidences were measured with six Ge and fourteen Si detectors installed at the detector array Cologne OSIRIS CUBE. This technique enabled a reaction channel selection. Multipole orders of the γ rays were derived from directional correlations of coincident γ rays and from angular distributions. Mean lifetimes were deduced for seven levels in 83Br and two levels in 85Rb using the Doppler-shift-attenuation method. The level scheme of 83Br has been extended up to (21/2+) or 15/2− states. In 85Rb a level sequence built on the ground state has been established up to 15/2(−) and a new cascade of fast M1 transitions starting with a 17/2(−) state at 3198.2keV has been found. Furthermore, several medium-spin states have been newly introduced. The level sequences in both nuclei have been interpreted in terms of the shell model. The calculations performed in the model space π(0g9/2, 1p½, 1p3/2, 0f5/2)v(0g9/2, 1p½) reproduce single-particle characteristics as well as collective properties of the level sequences.

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