English

Airy structure in $^{16}$O+$^{14}$C nuclear rainbow scattering

Nuclear Theory 2015-09-03 v1

Abstract

The Airy structure in 16^{16}O+14^{14}C rainbow scattering is studied with an extended double folding (EDF) model that describes all the diagonal and off-diagonal coupling potentials derived from the microscopic realistic wave functions for 16^{16}O using a density-dependent nucleon-nucleon force. The experimental angular distributions at ELE_L=132, 281 and 382.2 MeV are well reproduced by the calculations. By studying the energy evolution of the Airy structure, the Airy minimum at around θ\theta=76^\circ in the angular distribution at ELE_L=132 MeV is assigned as the second order Airy minimum A2A2 in contrast to the recent literature which assigns it as the third order A3A3. The Airy minima in the 90^\circ excitation function is investigated in comparison with well-known 16^{16}O+16^{16}O and 12^{12}C+12^{12}C systems. Evolution of the Airy structure into the molecular resonances with the 16^{16}O+14^{14}C cluster structure in the low energy region around Ec.m.E_{c.m.}=30 MeV is discussed. It is predicted theoretically for the first time for a non-4N4N 16^{16}O+14^{14}C system that Airy elephants in the 90^\circ excitation function are present.

Keywords

Cite

@article{arxiv.1509.00671,
  title  = {Airy structure in $^{16}$O+$^{14}$C nuclear rainbow scattering},
  author = {S. Ohkubo and Y. Hirabayashi},
  journal= {arXiv preprint arXiv:1509.00671},
  year   = {2015}
}

Comments

6 pages, 5 figures

R2 v1 2026-06-22T10:47:24.925Z