Postacceleration effects in the Coulomb dissociation of neutron halo nuclei

Prabir Banerjee, Gerhard Baur, Kai Hencken, Radhey Shyam, and Dirk Trautmann
Phys. Rev. C 65, 064602 – Published 22 May 2002
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Abstract

We study the breakup of one-neutron halo nuclei in the Coulomb field of a target nucleus. In the post-form distorted wave Born approximation theory of this reaction, with only Coulomb distortions in the entrance and outgoing channels, an analytic solution for the breakup T matrix is known. We study this T matrix and the corresponding cross sections numerically. This formula can be related to the first order semiclassical treatment of the electromagnetic dissociation. This theory contains the electromagnetic interaction between the core and the target nucleus to all orders. We show that higher order effects (including postacceleration) are small in the case of higher beam energies and forward scattering. We investigate the beam energy dependence of the postacceleration effects. They are found to be quite important for smaller beam energies (slow collisions), but almost negligible at larger ones.

  • Received 24 January 2002

DOI:https://doi.org/10.1103/PhysRevC.65.064602

©2002 American Physical Society

Authors & Affiliations

Prabir Banerjee1, Gerhard Baur2, Kai Hencken3, Radhey Shyam4, and Dirk Trautmann3

  • 1Physics Group, Variable Energy Cyclotron Centre, Calcutta 700 064, India
  • 2Institut für Kernphysik (Theorie), Forschungszentrum Jülich, D-52425 Jülich, Germany
  • 3Institut für Physik, Universität Basel, Klingelbergstr. 82, 4056 Basel, Switzerland
  • 4Saha Institute of Nuclear Physics, Calcutta 700 064, India

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Issue

Vol. 65, Iss. 6 — June 2002

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