Landau levels for the (2 + 1) Dunkl–Klein–Gordon oscillator

Author:

Mota R. D.1,Ojeda-Guillén D.2,Salazar-Ramírez M.2,Granados V. D.3

Affiliation:

1. Escuela Superior de Ingeniería Mecánica y Eléctrica, Unidad Culhuacán, Instituto Politécnico Nacional, Avenida Santa Ana No. 1000, Colonia San Francisco Culhuacán, Delegación Coyoacán, C.P. 04430 Ciudad de México, Mexico

2. Escuela Superior de Cómputo, Instituto Politécnico Nacional, Avenida Juan de Dios Bátiz esq. Avenida Miguel Othón de Mendizábal, Colonia Lindavista, Delegación Gustavo A. Madero, C.P. 07738 Ciudad de México, Mexico

3. Escuela Superior de Física y Matemáticas, Instituto Politécnico Nacional, Edificio 9, Unidad Profesional Adolfo López Mateos, Delegación Gustavo A. Madero, C.P. 07738 Ciudad de México, Mexico

Abstract

In this paper, we study the (2 + 1)-dimensional Klein–Gordon oscillator coupled to an external magnetic field, in which we change the standard partial derivatives for the Dunkl derivatives. We find the energy spectrum (Landau levels) in an algebraic way, by introducing three operators that close the su(1, 1) Lie algebra and from the theory of unitary representations. Also, we find the energy spectrum and the eigenfunctions analytically, and we show that both solutions are consistent. Finally, we demonstrate that when the magnetic field vanishes or when the parameters of the Dunkl derivatives are set to zero, our results are adequately reduced to those reported in the literature.

Funder

SNI-Mexico, COFAA-IPN, EDI-IPN, EDD-IPN and CGPI-IPN

Publisher

World Scientific Pub Co Pte Lt

Subject

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

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