Feshbach–Villars equation in a κ-Minkowski spacetime

Author:

Hamil B.1,Merad M.2

Affiliation:

1. Département de TC de SNV, Université Hassiba Benbouali, Chlef, Algeria

2. Faculté des Sciences Exactes, Département des sciences de la matière, Université de Oum El Bouaghi, 04000 Oum El Bouaghi, Algeria

Abstract

In this paper, by using the Dirac derivatives the Klein–Gordon (K-G) equation is determined in a [Formula: see text]-Minkowski spacetime. The dispersion relation and the first-order approximation case are deduced. The Feshbach–Villars (FV) equation is derived by applying the new linearization process to the time. We then study the effect of magnetic interaction on energies spectrum in a [Formula: see text]-Minkowski spacetime as an application, as a result we found that the energies spectrum are not symmetrical. We also study the case of hydrogen atom in non-relativistic limit by using perturbation theory. The upper bound of the [Formula: see text]-deformation parameter is evaluate, on the basis of the experimental data for [Formula: see text] transition frequency.

Publisher

World Scientific Pub Co Pte Lt

Subject

General Physics and Astronomy,Astronomy and Astrophysics,Nuclear and High Energy Physics

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