Results of the measurements of the excitation function in the deuteron-induced reaction 45 Sc(d, p) 46 Sc have been obtained at the energy of incident deuterons up to 11.7 MeV. In addition, data for the 45 Sc(d, t) 44 Sc reaction were obtained. The experiments were performed using the variable energy cyclotron U-120M (NPI, Řež) and the Electrostatic Generator EG-5 (FLNP, JINR). The cross sections of the induced activities were measured using the stacked-foil technique. The measured excitation functions were similar to those observed for the 45 Sc( 6 He, 5 He * ) 46 Sc reaction, studied at the accelerator complex for radioactive beams DRIBs (FLNR, JINR). The maximum probability of producing 46 Sc was also found close to the Coulomb barriers of these reactions. The compilation of available experimental data, obtained at deuteron and 6 He-energies near the Coulomb barrier, showed that the values of the cross sections at the maxima of the excitation functions obtained in (d, p) reactions and the reactions for one-neutron pickup from the 6 He projectiles have a different Z-dependence.
A study of inelastic scattering and single-particle transfer reactions was performed using a 63 MeV alpha beam on a 9 Be target. Angular distributions of the differential cross sections for the 9 Be(α,α ) 9 Be * , 9 Be(α, 3 He) 10 Be and 9 Be(α,t) 10 B reactions were measured. Experimental angular distributions of the differential cross sections for the ground states and a few low-lying states in the final nuclei were analyzed in the framework of the optical model, coupled channels and distorted-wave Born approximation. An analysis of the obtained spectroscopic factors was performed.
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