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首页> 外文期刊>Optica applicata >Design of a novel photonic crystal 1.31/1.55 mu m bi-band filter for near infrared application
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Design of a novel photonic crystal 1.31/1.55 mu m bi-band filter for near infrared application

机译:用于近红外应用的新型光子晶体1.31 / 1.55 mu m双频滤波器

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摘要

A novel design of a double selective filter for integrated optics in two-dimensional photonic crystals operating at a wavelength of 1.31 and 1.55 mu m is proposed in this paper. We focus particularly on filters transmission and selectivity enhancement. The two-dimensional photonic crystals filters are simulated by using a combination of three cascaded waveguides; these later are conceived by one missing row and with different rods radii for efficient filtering purpose. The properties of these photonic crystal structures are numerically investigated by using the two-dimensional finite-difference time-domain method and the numerical results are given for incident light wave having transverse electrical polarization. A final synthesized filter topology is presented and the maximum of transmission is found around 70% and 60% localized respectively near 1.31 and 1.55 mu m wavelengths.
机译:本文提出了一种在波长为1.31和1.55μm的二维光子晶体中进行二维光子晶体中集成光学器件的双重选择过滤器的新颖设计。 我们特别关注过滤器传输和选择性增强。 通过使用三个级联波导的组合来模拟二维光子晶体过滤器; 这些后来被一个缺失的行和不同的杆半径构思,以获得有效的过滤目的。 通过使用二维有限差时域方法进行数值研究这些光子晶体结构的性质,并且给出了具有横向电极化的入射光波的数值结果。 提出了最终合成的滤波器拓扑,并且透射的最大值分别为近1.31和1.55μm的局部定位约70%和60%。

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