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Reflecting filters based on one dimensional photonic crystal with large lattice constant

机译:基于大格子常数的一维光子晶体反射滤波器

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We change the optical thicknesses of different layers in one dimensional photonic crystals (1DPCs) by introducing sine and cosine functions into transfer matrix method and find that the changes of 1DPC's optical thicknesses from regular periodic structures to sine and cosine function structures, will make the reflection spectrums of 1DPCs appear multiple reflection peaks and these peak's widths and positions can be easily modulated by changing the fundamental parameters of sine and cosine functions. In this paper, we use this method to design two types of narrow band reflecting filters based on 1DPCs with large lattice constant.
机译:我们通过将正弦和余弦函数引入传输矩阵法,在一维光子晶体(1dpcs)中改变不同层的光学厚度,并发现从常规周期性结构到正弦和余弦函数结构的1dpc光学厚度的变化将成为反射1dpcs的光谱出现多个反射峰值,并且可以通过改变正弦和余弦功能的基本参数来容易地调制这些峰值的宽度和位置。在本文中,我们使用该方法基于具有大格常数的1DPC设计两种类型的窄带反射滤波器。

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