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Beyond the eikonal model for few-body systems

J. S. Al-Khalili, J. A. Tostevin, and J. M. Brooke
Phys. Rev. C 55, R1018(R) – Published 1 March 1997
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Abstract

A physical prescription to improve the accuracy of few-body Glauber model calculations of reactions involving loosely bound projectiles is presented in which the eikonal phase shift function of each projectile constituent is modified to account for curvature of its trajectory. Noneikonal effects due to both nuclear and Coulomb interactions are treated on an equal footing. The proposed method is assessed quantitatively by comparison with full quantum mechanical calculations in the case of 11Be+12C elastic scattering, treated as a three-body 10Be+n+target problem, at energies of 25 and 49.3 MeV/nucleon. Calculated cross-section angular distributions which include the noneikonal modifications are shown to be accurate to larger scattering angles, and for lower incident projectile energies.

  • Received 10 December 1996

DOI:https://doi.org/10.1103/PhysRevC.55.R1018

©1997 American Physical Society

Authors & Affiliations

J. S. Al-Khalili, J. A. Tostevin, and J. M. Brooke

  • Department of Physics, University of Surrey, Guildford, Surrey, GU2 5XH, United Kingdom

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Vol. 55, Iss. 3 — March 1997

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