首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Absolute photonic band gaps of two-dimensional square-lattice photonic crystals with Taiji-shaped dielectric rods
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Absolute photonic band gaps of two-dimensional square-lattice photonic crystals with Taiji-shaped dielectric rods

机译:带有太极形介电棒的二维方格光子晶体的绝对光子带隙

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摘要

A novel structure of two-dimensional (2D) square-lattice photonic crystal (SLPC) composed of Taiji-shaped dielectric rods imbedded in air is constructed and the properties of absolute photonic band gap (PBG) are theoretically analyzed in both the number and width by Plane Wave Expansion Method (PWM). By comparing the absolute PBGs in 2D SLPCs consisting of four shapes of rods with different symmetries (circle, button, semicircle and Taiji) at the same filling ratio, we find that both the number and width of absolute PBG significantly increase with the breaking of scatterer's symmetry, and the Taiji-shaped rods with the poorest symmetry can attain both the most number and the largest width of absolute PBGs. Additionally, we also study the influence of dielectric constant epsilon and three geometric parameters of Taiji-shaped scatterer on the absolute PBG and discover that the SLPC with Taiji-shaped rods can generate at most nine absolute PBGs and the largest absolute PBG with the width 0.0485 ((omega)a/2(pi)c).
机译:构建了由空气中嵌入的太极形介电棒构成的二维(2D)方格光子晶体(SLPC)的新型结构,并从数量和宽度两方面对绝对光子带隙(PBG)的性质进行了理论分析。通过平面波扩展方法(PWM)。通过比较在相同填充率下由四种形状的具有不同对称性的圆棒(圆,纽扣,半圆和太极)组成的二维SLPC中的绝对PBG,我们发现绝对PBG的数量和宽度都随着散射体的破裂而显着增加。对称性最强的太极形杆可以获得绝对数量的最大数量和最大宽度。此外,我们还研究了介电常数ε和太极形散射体的三个几何参数对绝对PBG的影响,发现带有太极形棒的SLPC最多可产生9个绝对PBG,最大产生宽度为0.0485的绝对PBG (ωa/2πc)。

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