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Broadband optical reflector based on Si/SiO2 one-dimensional graded photonic crystal structure

机译:基于Si / SiO2一维梯度光子晶体结构的宽带光反射器

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摘要

We propose the design of broadband optical reflector using a one-dimensional graded photonic crystal (GPC) structure. The proposed structure consists of a periodic array of two alternate layers of SiO2 and Si with low and high values of refractive indices (n1 and n2) and thicknesses a and b, respectively. The GPC structure considered here has a linear change in the thickness of the constituent layers for a certain number of layers and has a periodic repetition of this unit. In order to calculate the reflection properties a transfer matrix method (TMM) has been used. This investigation shows that GPC structures have wider reflection bands in comparison to a conventional PC structure and the width of the reflection bands can be enlarged by increasing the number of graded periods and also by increasing the thickness of periods. We also observe that in a GPC structure, omnidirectional reflection (ODR) bands get enhanced without increasing the number of layers of the structure. Hence, a GPC structure can be used as a broadband optical reflector and the range of reflection can be tuned to any wavelength region by varying the thickness of the graded periods.
机译:我们提出了使用一维渐变光子晶体(GPC)结构的宽带光学反射器的设计。所提出的结构由两个交替的SiO2和Si层的周期性阵列组成,分别具有低值和高折射率(n1和n2)以及厚度a和b。在此考虑的GPC结构对于一定数量的层而言,构成层的厚度具有线性变化,并且具有该单元的周期性重复。为了计算反射特性,已经使用了转移矩阵方法(TMM)。该研究表明,与传统的PC结构相比,GPC结构具有更宽的反射带,并且可以通过增加渐变周期的数量以及增加周期的厚度来增大反射带的宽度。我们还观察到,在GPC结构中,全向反射(ODR)波段得到增强,而没有增加结构的层数。因此,GPC结构可以用作宽带光学反射器,并且可以通过改变渐变周期的厚度将反射范围调整到任何波长区域。

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