Abstract
The elastic resonance scattering of N + p 13 and F + p 17 has been studied in inverse kinematics via a thick-target method. The excitation function for the N + p 13 scattering was obtained in the energy interval of E c . m . ≃ 0.5 − 3.2 MeV with a N 13 secondary beam of ( 47.8 ± 1.5 ) MeV . The resonance parameters for five low-lying levels in O 14 were deduced by R-matrix fitting calculations. In the case of F + p 17 scattering, preliminary result on the experimental excitation function is presented, in which the 4.52 MeV 3 + and 5.11 MeV 2 + states in Ne 18 are clearly discernable.
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