Abstract

A detailed study of the angular distributions of the emitted protons from the reaction 12C(d, p 1) 13C in the deuteron energy range 1.4 to 3.2 MeV is presented. The angular distributions are obtained from the line shape of the Doppler shifted γ-rays. The excitation function for the reaction shows strong intensity fluctuations which are superimposed on an energy dependent average behaviour. The reaction is therefore assumed to proceed through direct interaction as well as compound nucleus formation, and the amplitudes for the two different reaction mechanisms are added linearly to form the total reaction amplitude. The 14N resonance structure obtained is also based upon studies of the reactions (d, p 2γ) and (d, p 3γ).

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