Abstract
The reaction 16O(d, n) 17F was investigated by the neutron time-of-flight method at E d = 8.0 and 9.3 MeV. Absolute angular distributions were obtained for the transitions to the ground and first excited states in 17F. Excited states in 17F at E x = 3.10 and 3.86 MeV were identified. No evidence was found in 17F for the mirror level of the 5.22 MeV state in 17O. The distorted wave method analysis of 16O(d, P) 17O and 16O(d, n) 17F ground state and first excited state transitions yielded spectroscopic factors near 0.9.
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