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Propagation in Diagonal Anisotropic Chirowaveguides

Authors :
Fatiha Benabdelaziz
Djamel Sayad
Chemseddine Zebiri
Samia Aib
Source :
Advances in OptoElectronics, Vol 2017 (2017)
Publication Year :
2017
Publisher :
Hindawi, 2017.

Abstract

A theoretical study of electromagnetic wave propagation in parallel plate chirowaveguide is presented. The waveguide is filled with a chiral material having diagonal anisotropic constitutive parameters. The propagation characterization in this medium is based on algebraic formulation of Maxwell’s equations combined with the constitutive relations. Three propagation regions are identified: the fast-fast-wave region, the fast-slow-wave region, and the slow-slow-wave region. This paper focuses completely on the propagation in the first region, where the dispersion modal equations are obtained and solved. The cut-off frequencies calculation leads to three cases of the plane wave propagation in anisotropic chiral medium. The particularity of these results is the possibility of controlling the appropriate cut-off frequencies by choosing the adequate physical parameters values. The specificity of this study lies in the bifurcation modes confirmation and the possible contribution to the design of optical devices such as high-pass filters, as well as positive and negative propagation constants. This negative constant is an important feature of metamaterials which shows the phenomena of backward waves. Original results of the biaxial anisotropic chiral metamaterial are obtained and discussed.

Details

Language :
English
ISSN :
1687563X
Database :
OpenAIRE
Journal :
Advances in OptoElectronics
Accession number :
edsair.doi.dedup.....dce2ff582346929fb051a4ab9f3a7fab
Full Text :
https://doi.org/10.1155/2017/9524046