Abstract

The properties of the nuclear states up to J = 23/2/sup -/ are investigated in odd-A scandium isotopes /sup 45,47/Sc. The investigations are carried out in the framework of Hartree-Fock projection formalism by employing a realistic nucleon-nucleon interaction. An inert /sup 40/Ca core is assumed and all the valence nucleons are explicitly treated in the configuration space of the full pf shell. The energy levels, static electromagnetic moments and the electromagnetic transition probabilities are evaluated from the band-mixing calculations wherein the lowest four energetically close intrinsic states of the nuclei are taken into account. The theoretical results are in fair agreement with the available experimental data.

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