26 research outputs found

    Experimental evidence for 56Ni-core breaking from the low-spin structure of the N=Z nucleus 58Cu

    Get PDF
    Low-spin states in the odd-odd N=Z nucleus 58Cu were investigated with the 58Ni(p,n gamma)58Cu fusion evaporation reaction at the FN-tandem accelerator in Cologne. Seventeen low spin states below 3.6 MeV and 17 new transitions were observed. Ten multipole mixing ratios and 17 gamma-branching ratios were determined for the first time. New detailed spectroscopic information on the 2+,2 state, the Isobaric Analogue State (IAS) of the 2+,1,T=1 state of 58Ni, makes 58Cu the heaviest odd-odd N=Z nucleus with known B(E2;2+,T=1 --> 0+,T=1) value. The 4^+ state at 2.751 MeV, observed here for the first time, is identified as the IAS of the 4+,1,T=1 state in 58Ni. The new data are compared to full pf-shell model calculations with the novel GXPF1 residual interaction and to calculations within a pf5/2 configurational space with a residual surface delta interaction. The role of the 56Ni core excitations for the low-spin structure in 58Cu is discussed.Comment: 15 pages, 7 figures, submitted to Phys. Rev.

    Intruder bands in 113^{113}Sn

    No full text
    The level structure of 113^{113}Sn has been investigated. The data were obtained by in-beam Îł\gamma-ray spectroscopy using the reaction at 70 MeV performed at the OSIRIS gamma array in the Institut fĂĽr Kernphysik FN Tandem accelerator. We report in this short note the observation of two intruder type rotational bands in this nucleus
    corecore