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Comparison of photonic bandgaps of two-dimensional periodic and quasi-periodic photonic crystals with different relative permittivity dielectric
Authors:Jianjun Liu  Zhigang Fan
Affiliation:1. Research Center for Space Optical Engineering, School of Astronautics, Harbin Institute of Technology, Harbin 150001, China;2. Department of Electronic Science and Technology, College of Physics and Microelectronics Science, Hunan University, Changsha 410082, China
Abstract:Photonic bandgaps (PBGs) of two-dimensional (2D) triangular-lattice and square-lattice and decagonal quasi-periodic photonic crystals (PCs) have been analyzed, with a given scatterer radius and dielectric relative permittivity changing from 1 to 30 within air-cylinders-in-dielectric and dielectric-cylinders-in-air constructions. The results have shown that 2D quasi-periodic PC is more likely to generate PBG and complete PBG than 2D periodic PC. For the given scatterer radius and two constructions, PBG widths of the two types of 2D PCs vary little, whereas the corresponding center frequencies decrease in smooth “hyperbola-like” curves with dielectric relative permittivity increasing monotonically. The present results will guide the design of PBG-type microstructure photonic devices.
Keywords:Photonic crystal   Photonic quasicrystal   Plane wave expansion method   Photonic bandgap
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