Spectroscopic Amplitudes for One--Nucleon Transfer Between 1p0f--Shell Nuclei

Abstract

Spectroscopic amplitudes are calculated for one--nucleon transfer between low--lying, normal--parity states of nuclei in the lower part of the 1p0\,f--shell. Calculations are performed using shell--model wave functions obtained from the diagonalization procedure of a nuclear Hamiltonian in the space given by the complete set of states generated from the 1p3/2, 1p1/2, 0\,f7/2 and 0\,f5/2 orbits. The Hamiltonian contains one and two body interactions derived recently by Richter ηl. Sum rules for one--nucleon pick--up and stripping reactions are given. The selectivity in excitation of the final states induced by one--nucleon pick--up or stripping is discussed.

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