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- W2559951777 abstract "Abstract In this work we study theoretically the photonic band gap spectra for a one-dimensional quasicrystal made up of SiO2 (layer A) and a metamaterial (layer B) organized following the Octonacci sequence, where its nth-stage S n is given by the inflation rule S n = S n − 1 S n − 2 S n − 1 for n ≥ 3 , with initial conditions S 1 = A and S 2 = B . The metamaterial is characterized by a frequency dependent electric permittivity e ( ω ) and magnetic permeability μ ( ω ) . The polariton dispersion relation is obtained analytically by employing a theoretical calculation based on a transfer-matrix approach. A quantitative analysis of the spectra is then discussed, stressing the distribution of the allowed photonic band widths for high generations of the Octonacci structure, which depict a self-similar scaling property behavior, with a power law depending on the common in-plane wavevector k x ." @default.
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- W2559951777 date "2017-02-01" @default.
- W2559951777 modified "2023-10-01" @default.
- W2559951777 title "Photonic band gap spectra in Octonacci metamaterial quasicrystals" @default.
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- W2559951777 doi "https://doi.org/10.1016/j.optmat.2016.11.051" @default.
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