Abstract

The level structure of 58Fe has been studied by the 57Fe(d, p) reaction with 7.0 MeV incident deuterons, using the MIT multiple-angle spectrograph. Experimental angular distributions are compared with distorted-wave Born approximation calculations. Angular momentum values are determined for the observed transitions up to approximately 6.0 MeV excitation energy. Spectroscopic strengths are deduced from the data. The results are analyzed in terms of shell-model sum rules.

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