Plasmon polaritons in 1D Cantor-like fractal photonic superlattices containing a left-handed material

The propagation of light incident upon a 1D photonic superlattice consisting of successive stacking of alternate layers of a right-handed nondispersive material and a metamaterial, arranged to form a Cantor-like fractal, is considered. Plasmon-polariton excitations are thoroughly investigated within...

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Published inEurophysics letters Vol. 95; no. 2; p. 24004
Main Authors Mejía-Salazar, J. R, Porras-Montenegro, N, Reyes-Gómez, E, Cavalcanti, S. B, Oliveira, L. E
Format Journal Article
LanguageEnglish
Published IOP Publishing 01.07.2011
EPS, SIF, EDP Sciences and IOP Publishing
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Abstract The propagation of light incident upon a 1D photonic superlattice consisting of successive stacking of alternate layers of a right-handed nondispersive material and a metamaterial, arranged to form a Cantor-like fractal, is considered. Plasmon-polariton excitations are thoroughly investigated within the transfer-matrix approach and shown to strongly depend on the Cantor step number N. More specifically, the number of plasmon-polariton bands corresponds to the number 2N− 1 of metamaterial layers within the unit cell.
AbstractList The propagation of light incident upon a 1D photonic superlattice consisting of successive stacking of alternate layers of a right-handed nondispersive material and a metamaterial, arranged to form a Cantor-like fractal, is considered. Plasmon-polariton excitations are thoroughly investigated within the transfer-matrix approach and shown to strongly depend on the Cantor step number N. More specifically, the number of plasmon-polariton bands corresponds to the number 2N− 1 of metamaterial layers within the unit cell.
The propagation of light incident upon a 1D photonic superlattice consisting of successive stacking of alternate layers of a right-handed nondispersive material and a metamaterial, arranged to form a Cantor-like fractal, is considered. Plasmon-polariton excitations are thoroughly investigated within the transfer-matrix approach and shown to strongly depend on the Cantor step number N. More specifically, the number of plasmon-polariton bands corresponds to the number 2 super(N)− 1 of metamaterial layers within the unit cell.
Author Oliveira, L. E
Mejía-Salazar, J. R
Reyes-Gómez, E
Porras-Montenegro, N
Cavalcanti, S. B
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SubjectTerms 41.20.Jb
42.70.Gi
42.70.Qs
Bands
Fractal analysis
Fractals
Metamaterials
Photonics
Plasmons
Stacking
Superlattices
Title Plasmon polaritons in 1D Cantor-like fractal photonic superlattices containing a left-handed material
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