Algebraic approach for the one-dimensional Dirac-Dunkl oscillator

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Ojeda-Guillén, D., Mota, R. D., Salazar-Ramírez, M., Granados, V. D.
Format: Preprint
Published: 2020
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866918104427134976
author Ojeda-Guillén, D.
Mota, R. D.
Salazar-Ramírez, M.
Granados, V. D.
author_facet Ojeda-Guillén, D.
Mota, R. D.
Salazar-Ramírez, M.
Granados, V. D.
contents We extend the $(1+1)$-dimensional Dirac-Moshinsky oscillator by changing the standard derivative by the Dunkl derivative. We demonstrate in a general way that for the Dirac-Dunkl oscillator be parity invariant, one of the spinor component must be even, and the other spinor component must be odd, and vice versa. We decouple the differential equations for each of the spinor component and introduce an appropriate $su(1,1)$ algebraic realization for the cases when one of these functions is even and the other function is odd. The eigenfunctions and the energy spectrum are obtained by using the $su(1,1)$ irreducible representation theory. Finally, by setting the Dunkl parameter to vanish, we show that our results reduce to those of the standard Dirac-Moshinsky oscillator.
format Preprint
id arxiv_https___arxiv_org_abs_2003_08975
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle Algebraic approach for the one-dimensional Dirac-Dunkl oscillator
Ojeda-Guillén, D.
Mota, R. D.
Salazar-Ramírez, M.
Granados, V. D.
Quantum Physics
Mathematical Physics
We extend the $(1+1)$-dimensional Dirac-Moshinsky oscillator by changing the standard derivative by the Dunkl derivative. We demonstrate in a general way that for the Dirac-Dunkl oscillator be parity invariant, one of the spinor component must be even, and the other spinor component must be odd, and vice versa. We decouple the differential equations for each of the spinor component and introduce an appropriate $su(1,1)$ algebraic realization for the cases when one of these functions is even and the other function is odd. The eigenfunctions and the energy spectrum are obtained by using the $su(1,1)$ irreducible representation theory. Finally, by setting the Dunkl parameter to vanish, we show that our results reduce to those of the standard Dirac-Moshinsky oscillator.
title Algebraic approach for the one-dimensional Dirac-Dunkl oscillator
topic Quantum Physics
Mathematical Physics
url https://arxiv.org/abs/2003.08975