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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Study of one-dimensional nanolayered graded photonic crystal consisting of birefringent and dielectric materials
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Study of one-dimensional nanolayered graded photonic crystal consisting of birefringent and dielectric materials

机译:一种由双折射和介电材料组成的一维纳米分级光子晶体的研究

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摘要

In the present paper, we have studied a comparison between dielectric-dielectric photonic crystal (PhC) and birefringent-dielectric PhC structure with, and without, gradation in the thickness of the layers of the proposed structure. Graded birefringent-dielectric PhC has a linear change in the thickness of the layers. With the help of the transfer matrix method, the proposed structures have been extensively investigated. It is found that photonic band gap (PBG) width and omnidirectional reflection band width has been widely enhanced, in graded birefringent-dielectric PhC structure as compared to the non-graded birefringent-dielectric PhC structure, for both TE and TM polarizations. We have also found that the gradation in the thickness of the birefringent layer is more effective, as compare the gradation in the thickness of the dielectric layer, for enhancement of reflection band width. The results obtained are quite good and thus, it may be widely used as broad band optical and omnidirectional reflector. (C) 2017 Elsevier B.V. All rights reserved.
机译:在本文中,我们已经研究了介电 - 介质光子晶体(PHC)和双折射介电PHC结构与所提出的结构层的厚度的比较。分级双折射 - 介电PHC具有层的厚度的线性变化。借助转移矩阵方法,已广泛研究了所提出的结构。发现光子带隙(PBG)宽度和全向反射带宽被广泛增强,与非分级双折射介电PHC结构相比,梯度双折射介电PHC结构,用于TE和TM偏振。我们还发现,双折射层的厚度的渐变更有效,如将介电层的厚度的渐变比较,以提高反射带宽。所得到的结果非常好,因此,可以广泛地用作宽带光学和全向反射器。 (c)2017 Elsevier B.v.保留所有权利。

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