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TMF, 2017 Volume 190, Number 1, Pages 78–86 (Mi tmf9036)

This article is cited in 19 papers

Supersymmetry-inspired low-energy $\alpha$$p$ elastic scattering phases

J. Bhoi, U. Laha

Department of Physics, National Institute of Technology, Jamshedpur, India

Abstract: We consider an effective potential model consisting of an electromagnetic part plus a nuclear part as the ground state interaction for an $\alpha$$p$ system. The next few higher partial wave interactions are generated using the formalism of supersymmetric quantum mechanics. We adapt the phase function method to compute $\alpha$$p$ elastic scattering phases up to $12$ MeV, including the effect of the electromagnetic interaction quite rigorously in our phase shift calculation. With the further incorporation of some energy-dependent correction factors to our interactions, we obtain a good agreement with the experimental data.

Keywords: Hulthen atomic potential, Hulthen nuclear potential, supersymmetry, factorization, phase function method, $\alpha$$p$ elastic scattering phase.

PACS: 24.10.-i; 03.65.Nk.;11.30.Pb; 13.75.Cs

Received: 07.09.2015
Revised: 07.11.2015

DOI: 10.4213/tmf9036


 English version:
Theoretical and Mathematical Physics, 2017, 190:1, 69–76

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