首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Photonic band gaps of two-dimensional square-lattice photonic crystals based on 8-shaped scatters
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Photonic band gaps of two-dimensional square-lattice photonic crystals based on 8-shaped scatters

机译:基于8形散射的二维方格光子晶体的光子带隙

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摘要

A novel photonic crystals (PhC) based on 8-shaped scatters with two-dimensional (2-D) square-lattice is presented. By employing the MIT photonic bands (MPB), the relationship between the structural parameters of the PhC and the properties of photonic band gaps (PBG) are investigated. The calculation results of 8-shaped scatters with 2-D square-lattice demonstrate that the reduction of scatters' symmetry can produce larger number of PBG and broaden the width of PBG only for TM mode, and reversely for TE mode. The peculiarity would meet the distinguish employment of different mode. By optimizing the structural parameters, the maximum absolute PBG 0.1028(omega a/2 pi c) at R=0.3, epsilon(r) =11.56, theta=45 degrees is obtained and six absolute PBGs is got at R = 0.3, theta=115 degrees, epsilon(r) is an element of[32.3, 33.5]. (C) 2015 Elsevier GmbH. All rights reserved.
机译:提出了一种基于具有二维(2-D)正方形晶格的8形散射的新型光子晶体(PhC)。通过使用MIT光子带(MPB),研究了PhC的结构参数与光子带隙(PBG)的性质之间的关系。具有二维正方形晶格的8形散射的计算结果表明,散射的对称性降低可以产生更多的PBG并扩大PBG的宽度,仅对于TM模式,而对于TE模式则相反。独特性将满足不同模式的独特运用。通过优化结构参数,在R = 0.3时最大绝对PBG为0.1028(ωa / 2 pi c),ε(r)= 11.56,θ= 45度,在R = 0.3时获得六个绝对PBG,R = 0.3,在115度下,ε(r)是[32.3,33.5]的元素。 (C)2015 Elsevier GmbH。版权所有。

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