Positron and Electron Impact Elastic Scattering by Atomic Beryllium

Authors

  • W. B. Wechuli Kenyatta University
  • V. E. Waswa Kenyatta University
  • J. M. Linturi South Eastern Kenya University
  • P. K. Kariuki Kenyatta University

DOI:

https://doi.org/10.33886/ajpas.v4i3.425

Keywords:

Positronium, elastic scattering, cross sections, distorted wave Born approximation

Abstract

Theoretical results for positron and electron elastic scattering from beryllium atom at incident energies ranging from the first inelastic threshold to 200 eV
are presented. Elastic, total, momentum transfer, and differential cross sections are computed using both the first order distorted wave Born approximation and
the optical potential approaches utilizing a complex potential. We have shown that our data agree fairly well with the available data and provided the details of the
Physics in case of discrepancies. This study demonstrates the importance of accurate atomic elastic scattering cross sections.

Author Biographies

W. B. Wechuli, Kenyatta University

Department of Physics, Kenyatta University

V. E. Waswa, Kenyatta University

Department of Physics, Kenyatta University

J. M. Linturi, South Eastern Kenya University

Department of Physical Sciences, South Eastern Kenya University

P. K. Kariuki, Kenyatta University

Department of Physics, Kenyatta University

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Published

2023-12-30

How to Cite

Wechuli, W. B., Waswa, V. E., Linturi, J. M., & Kariuki, P. K. (2023). Positron and Electron Impact Elastic Scattering by Atomic Beryllium. African Journal of Pure and Applied Sciences, 4(3), 44–53. https://doi.org/10.33886/ajpas.v4i3.425

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