Eikonal description of quantal scattering |
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Authors: | P Fröbrich R Lipperheide G Thoma |
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Affiliation: | Bereich Kern- und Strahlenphysik, Hahn-Meitner-Institut für Kernforschung Berlin GmbH and Fachbereich Physik, Freie Universität Berlin, Berlin-West, Germany |
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Abstract: | Elastic and inelastic quantal scattering is described by a theory in which the contribution of a range of impact parameters to the scattering amplitude is determined by a phase integral (“eikonal”) which is integrated along a real curved “quantal” trajectory. This amplitude reduces to the Glauber expression in the high-energy, forward-angle limit, and to the usual semiclassical amplitude in the classical limit. The formulation can be applied to the study of heavy-ion scattering. The quantal trajectories are investigated analytically for the case of Coulomb scattering. A numerical analysis of elastic 16O16O scattering is carried out. The results show appreciable improvement as compared with the Glauber approximation. |
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