Maxwellian evolution equations along the uniform optical fiber in Minkowski space

Authors

  • T. Körpınar Mus Alparslan University
  • R. Cem Demirkol Department of Mathematics Mus Alparslan University.
  • Z. Körpınar Mus Alparslan University
  • V. Asil Fırat University

DOI:

https://doi.org/10.31349/RevMexFis.66.431

Keywords:

Maxwell's equations, wave propagation, optical fiber, evolution equation, traveling wave hypothesis.

Abstract

We firstly discuss the geometric phase rotation for an electromagnetic wave traveling along the optical fiber in Minkowski space. We define two types of novel geometric phases associated with the evolution of the polarization vectors in the normal and binormal directions along the optical fiber by identifying the normal-Rytov parallel transportation law and binormal-Rytov parallel transportation law and derive their relationships with the new types of Fermi-Walker transportation law in Minkowski space. Then we describe a novel approach of solving Maxwell's equations in terms of electromagnetic field vectors and geometric quantities associated with the curved path characterizing the path uniform optical fiber by using the traveling wave transformation method. Finally, we investigate that electromagnetic wave propagation along the uniform optical fiber admits an interesting family of Maxwellian evolution equation having numerous physical and geometric applications for anholonomic coordinate system in Minkowski space

Author Biographies

T. Körpınar, Mus Alparslan University

Mathematics

Z. Körpınar, Mus Alparslan University

Administrtaion Department

V. Asil, Fırat University

Applied Sciences

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Published

2020-07-01

How to Cite

[1]
T. Körpınar, R. C. Demirkol, Z. Körpınar, and V. Asil, “Maxwellian evolution equations along the uniform optical fiber in Minkowski space”, Rev. Mex. Fís., vol. 66, no. 4 Jul-Aug, pp. 431–439, Jul. 2020.

Issue

Section

07 Gravitation, Mathematical Physics and Field Theory