Airy structure in O+C nuclear rainbow scattering
arXiv:1509.00671 · doi:10.1103/PhysRevC.92.024624
Abstract
The Airy structure in O+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 O using a density-dependent nucleon-nucleon force. The experimental angular distributions at =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 =76 in the angular distribution at =132 MeV is assigned as the second order Airy minimum in contrast to the recent literature which assigns it as the third order . The Airy minima in the 90 excitation function is investigated in comparison with well-known O+O and C+C systems. Evolution of the Airy structure into the molecular resonances with the O+C cluster structure in the low energy region around =30 MeV is discussed. It is predicted theoretically for the first time for a non- O+C system that Airy elephants in the 90 excitation function are present.
6 pages, 5 figures
References in corpus (5)
- Nuclear rainbow scattering and nucleus-nucleus potential
- Evidence for a secondary bow in Newton's zero-order nuclear rainbow
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