Spin-parities of sub-threshold resonances in the F(p, )O reaction
arXiv:2303.03596 · doi:10.1103/PhysRevC.107.035809
Abstract
The F(p, )O reaction is key to determining the F abundance in classical novae. However, the cross section for this reaction has large uncertainties at low energies largely caused by interference effects. Here, we resolve a longstanding issue with unknown spin-parities of sub-threshold states in Ne that reduces these uncertainties. The Ne(He, He)Ne neutron pick-up reaction was used to populate Ne excited states, focusing on the energy region of astrophysical interest ( 6 - 7 MeV). The experiment was performed at the Triangle Universities Nuclear Laboratory using the high resolution Enge split-pole magnetic spectrograph. Spins and parities were found for states in the astrophysical energy range. In particular, the state at 6.133 MeV (E keV) was found to have spin and parity of and we confirm the existence of an unresolved doublet close to 6.288 MeV (E keV) with J = and a high-spin state. Using these results, we demonstrate a significant factor of two decrease in the reaction rate uncertainties at nova temperatures.
15 pages, 6 figures, accepted in Phys. Rev. C. Corrected typos and references