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Properties of the Band Gaps in 1D Ternary Lossy Photonic Crystal Containing Double-Negative Materials

机译:含双负材料的一维三元有损光子晶体的带隙性质

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Theoretically, the characteristics matrix method is employed to investigate and compare the properties of the band gaps of the one-dimensional ternary and binary lossy photonic crystals which are composed of double-negative and double-positivematerials. This study shows that by varying the angle of incidence, the band gaps for TM and TE waves behave differently in both ternary and binary lossy structures.The results demonstrate that, by increasing the angle of incidence for the TE wave, the width and the depth of zero-n, zero-μ, and Bragg gap increase in both ternary and binary structures. On the other hand, the enhancement of the angle of incidence for the TM wave contributes to reduction of the width and the depth of the zero-n and Bragg gaps, and they finally disappear for incidence angles greater than 50° and 60° for the binary structure and 40° and 45° for the ternary structures, respectively. In addition, the details of the edges of the band gaps variations as a function of incidence angle for both structures are studied.
机译:从理论上讲,采用特征矩阵方法研究和比较由双负和双正材料组成的一维三元和二元有损光子晶体的带隙性质。这项研究表明,通过改变入射角,TM和TE波的带隙在三元和二元有损结构中的行为都不同。结果表明,通过增加TE波的入射角,宽度和深度三元和二元结构中零n,零μ和布拉格间隙的增大。另一方面,TM波入射角的增加有助于减小零-n间隙和布拉格间隙的宽度和深度,对于大于50°和60°的入射角,它们最终消失。二元结构,三元结构分别为40°和45°。另外,对两种结构的带隙变化的边缘的细节作为入射角的函数进行了研究。

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