English

Refractive effects and Airy structure in inelastic $^{16}$O+$^{12}$C rainbow scattering

Nuclear Theory 2014-12-24 v1

Abstract

Inelastic 16^{16}O +12^{12}C rainbow scattering to the 2+2^+ (4.44 MeV) state of 12^{12}C was measured at the incident energies, ELE_L = 170, 181, 200, 260 and 281 MeV. A systematic analysis of the experimental angular distributions was performed using the coupled channels method with an extended double folding potential derived from realistic wave functions for 12^{12}C and 16^{16}O calculated with a microscopic α\alpha cluster model and a finite-range density-dependent nucleon-nucleon force.The coupled channels analysis of the measured inelastic scattering data shows consistently some Airy-like structure in the inelastic scattering cross sections for the first 2+2^+ state of 12^{12}C, which is somewhat obscured and still not clearly visible in the measured data. The Airy minimum was identified from the analysis and the systematic energy evolution of the Airy structure was studied. The Airy minimum in inelastic scattering is found to be shifted backward compared with that in elastic scattering.

Keywords

Cite

@article{arxiv.1412.7239,
  title  = {Refractive effects and Airy structure in inelastic $^{16}$O+$^{12}$C rainbow scattering},
  author = {S. Ohkubo and Y. Hirabayashi and A. A. Ogloblin and Yu. A. Gloukhov and A. S. Dem'yanova and W. H. Trzaska},
  journal= {arXiv preprint arXiv:1412.7239},
  year   = {2014}
}

Comments

7 pages, 5 figures