Abstract
Taking 16O + 16O elastic scattering at 124 MeV as an example, we show that a barrier-wave-internal-wave decomposition of the elastic scattering amplitude provides valuable information on the light heavy-ion interaction and complements the more conventional nearside-farside decomposition. In particular, we show that the Airy minima present in the angular distributions are due to a barrier-wave-internal-wave interference mechanism, which sheds additional light on the exceptional transparency displayed by some light heavy-ion scattering systems. Extension of these ideas to other fields, like atomic and molecular collision physics, could prove rewarding. © 2000 The American Physical Society.
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CITATION STYLE
Michel, F., Brau, F., Reidemeister, G., & Ohkubo, S. (2000). Barrier-wave-internal-wave interference and airy minima in 16O16 + O elastic scattering. Physical Review Letters, 85(9), 1823–1826. https://doi.org/10.1103/PhysRevLett.85.1823
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