Dispersion Properties of Surface Waves Decaying in Red-Shifted and Blue-Shifted Gaps in Photonic Hypercrystals

The dispersion characteristics of surface waves for transverse electric and magnetic polarization modes of photonic hypercrystals (PHC) are theoretically explored. PHC are composed of a dielectric and hyperbolic metamaterial (HMM) with thin layers of both metal and dielectric surface waves that deca...

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Main Authors: Hasnain Haider, Munazza Zulfiqar Ali
Format: Article
Language:English
Published: Hindawi Limited 2023-01-01
Series:Advances in Condensed Matter Physics
Online Access:http://dx.doi.org/10.1155/2023/6773192
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author Hasnain Haider
Munazza Zulfiqar Ali
author_facet Hasnain Haider
Munazza Zulfiqar Ali
author_sort Hasnain Haider
collection DOAJ
description The dispersion characteristics of surface waves for transverse electric and magnetic polarization modes of photonic hypercrystals (PHC) are theoretically explored. PHC are composed of a dielectric and hyperbolic metamaterial (HMM) with thin layers of both metal and dielectric surface waves that decay inside red-shifted gaps have a negative group velocity, whereas surface waves that decay inside traditional blue-shifted gaps have more typical characteristics. Curve plotting is used to elucidate on how these surface waves depend on several other structural properties such as filling factor, widths of HMM and dielectric, frequency range and angle of incidence etc.
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spelling doaj.art-ae6b6d9d34e342ccab6faf0de5e581062023-10-15T00:00:01ZengHindawi LimitedAdvances in Condensed Matter Physics1687-81242023-01-01202310.1155/2023/6773192Dispersion Properties of Surface Waves Decaying in Red-Shifted and Blue-Shifted Gaps in Photonic HypercrystalsHasnain Haider0Munazza Zulfiqar Ali1University of the Punjab LahoreUniversity of the Punjab LahoreThe dispersion characteristics of surface waves for transverse electric and magnetic polarization modes of photonic hypercrystals (PHC) are theoretically explored. PHC are composed of a dielectric and hyperbolic metamaterial (HMM) with thin layers of both metal and dielectric surface waves that decay inside red-shifted gaps have a negative group velocity, whereas surface waves that decay inside traditional blue-shifted gaps have more typical characteristics. Curve plotting is used to elucidate on how these surface waves depend on several other structural properties such as filling factor, widths of HMM and dielectric, frequency range and angle of incidence etc.http://dx.doi.org/10.1155/2023/6773192
spellingShingle Hasnain Haider
Munazza Zulfiqar Ali
Dispersion Properties of Surface Waves Decaying in Red-Shifted and Blue-Shifted Gaps in Photonic Hypercrystals
Advances in Condensed Matter Physics
title Dispersion Properties of Surface Waves Decaying in Red-Shifted and Blue-Shifted Gaps in Photonic Hypercrystals
title_full Dispersion Properties of Surface Waves Decaying in Red-Shifted and Blue-Shifted Gaps in Photonic Hypercrystals
title_fullStr Dispersion Properties of Surface Waves Decaying in Red-Shifted and Blue-Shifted Gaps in Photonic Hypercrystals
title_full_unstemmed Dispersion Properties of Surface Waves Decaying in Red-Shifted and Blue-Shifted Gaps in Photonic Hypercrystals
title_short Dispersion Properties of Surface Waves Decaying in Red-Shifted and Blue-Shifted Gaps in Photonic Hypercrystals
title_sort dispersion properties of surface waves decaying in red shifted and blue shifted gaps in photonic hypercrystals
url http://dx.doi.org/10.1155/2023/6773192
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AT munazzazulfiqarali dispersionpropertiesofsurfacewavesdecayinginredshiftedandblueshiftedgapsinphotonichypercrystals