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Band-gap Properties of Two-dimensinal Low-index Photonic Crystals

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Matthews, Aaron
Wang, Xue-Hua
Gu, Min
Kivshar, Yuri

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Springer

Abstract

We study the band-gap properties of two-dimensional photonic crystals created by a lattice of rods or holes conformed in a symmetric or asymmetric triangular structure. Using numerical plane-wave method, we calculate a minimum value of the refractive-index contrast for opening both partial and full two-dimensional spectral gaps for both TM- and TE-polarized waves. We also analyze the effect of ellipticity of rods and holes and their orientation on the threshold value and the relative size of the band gaps.

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Applied Physics B: Lasers and Optics

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Restricted until

2037-12-31