Secondary bow with ripples in C+C rainbow scattering
arXiv:2509.14535 · doi:10.1140/epja/s10050-025-01685-4
Abstract
We report, {for the first time, the emergence of} a secondary bow with ripples in C+C nuclear rainbow scattering. This finding was achieved by studying the experimental angular distributions in C+C scattering at incident energies = 240 and 300 MeV, utilizing an extended double-folding model. This model accurately describes all diagonal and off-diagonal coupling potentials derived from the microscopic wave functions for C. Although the observed angular distributions of rainbow scattering at large angles (approaching ) are complicated by the symmetrization of two identical bosonic nuclei, the Airy minimum, associated with a dynamically generated secondary bow with ripples, is clearly identified at approximately 77 for 240 MeV in the fall-off region of the primary nuclear rainbow. This {finding}, along with previous findings in the O+C and C+C systems, {reinforces} the concept of a secondary bow in nuclear rainbow scattering.
9 pages, 6 figures
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