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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Large range of omni-directional reflection in 1D photonic crystal heterostructures
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Large range of omni-directional reflection in 1D photonic crystal heterostructures

机译:一维光子晶体异质结构中的大范围全向反射

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摘要

A simple design of one-dimensional omni-directional reflector based on photonic crystal heterostructures structure has been proposed. The proposed structure consists of a periodic array of alternate layers of SiO_2 and Te as the materials of low and high refractive indices, respectively. The structure considered here has three stacks of periodic structures having five layers each. The lattice period of successive stack is increased by a certain multiple (say gradual constant, δ) of the lattice period of the just preceding stack. For numerical computation, the method of transfer matrix method (TMM) has been employed. It is found that such a structure has wider reflection bands in comparison to a conventional dielectric PC structure and the width of the omni-directional reflection (ODR) bands can be enlarged by increasing the value of the gradual constant δ.
机译:提出了一种基于光子晶体异质结构的一维全向反射器的简单设计。所提出的结构由分别作为低折射率和高折射率材料的SiO_2和Te交替层的周期性阵列组成。这里考虑的结构具有三层周期性结构,每层具有五层。连续堆栈的晶格周期会增加前一个堆栈的晶格周期的某个倍数(例如,渐变常数δ)。对于数值计算,已经采用了传递矩阵法(TMM)。已经发现,与常规的电介质PC结构相比,这种结构具有更宽的反射带,并且可以通过增加梯度常数δ的值来扩大全向反射(ODR)带的宽度。

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