Abstract
Energy levels in 56Fe have been obtained up to an excitation of 4.5 MeV from the inelastic scattering of 12 MeV deuterons by using a multi-gap magnetic spectrograph with nuclear emulsion as the detector. Angular distributions for these levels were measured, and the results were analysed in terms of the distorted-wave method using the collective model of interaction by deforming both real and imaginary parts of the optical potential. Good agreement was found for the first 2 + and the octupole vibrational states, and the corresponding deformation parameters were extracted.
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