Elastic Scattering of Electrons and Positrons from Rb and Cs atoms with relativistic effects
POSTER
Abstract
The elastic scattering of electrons and positrons with Rb and Cs atoms is investigated theoretically employing two different approaches: i) the relativistic Dirac partial wave analysis with a complex optical-potential model (OPM) [1] and ii) the nuclear structure approach (NSA) [2] for 1 eV ≤ Ei ≤ 1 GeV. The OPM incorporates the interaction of the projectile with both the nucleus and the bound target electrons, but the NSA retains only the projectile-nucleus interaction, without the shielding effect due to the bound electrons. An overlap region connecting properly both the low- and high-energy findings is established. Comparison with experimental and other theoretical findings shows the predictive power of our approach, which can easily handle heavier targets without much numerical efforts.
[1] Haque et. al, J. Phys. B 51, 175202 [2018].
[2] T. W. Donnelly and I. Sick, Rev. Mod. Phys. 56, 461 (1984).
[1] Haque et. al, J. Phys. B 51, 175202 [2018].
[2] T. W. Donnelly and I. Sick, Rev. Mod. Phys. 56, 461 (1984).
Presenters
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Bidhan C Saha
Florida A&M University
Authors
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Bidhan C Saha
Florida A&M University
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D. Jakubassa-Amumdsen
Mathematics Institute, University of Munich, 8033 Munich, Germany
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A. Basak
Department of Physics, University of Rajshahi, Rajshahi, Bangladesh
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A. K. Haque
Department of Physics, Rajshahi University, Rajshahi, Bangladesh
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M. Haque
Department of Physics, Rajshahi University, Rajshahi, Bangladesh
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M. Uddin
Department of Physics, Pabna University of Science and Technology, Bangladesh