Abstract
The 31P(d, n) 32S reaction has been studied at deuteron energy of 4.9 MeV. Neutron energies were measured by the use of time-of-flight techniques. Analysis of angular distributions yielded l p values for eight levels in 32S. Three T = 0 and T = 1 states formed by s-wave proton transfer were identified. The experimental isobaric spin energy splitting is found to be 7.5 MeV which is considerably larger than for other doubly even nuclei in this mass region. This difference is explained at least partly by the fact that in this case different configurations predominate in the T = 0 and the T = 1 states.
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