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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >New version of seven wavelengths demultiplexer based on the microcavities in a two-dimensional photonic crystal
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New version of seven wavelengths demultiplexer based on the microcavities in a two-dimensional photonic crystal

机译:基于二维光子晶体中微腔的七波长解复用器的新版本

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摘要

A new two dimensional photonic crystal demultiplexer of wavelength (WDM) is designed by exploiting two Fabry-Pérot reflectors at the end of the bus waveguides. The results show that the light with different wavelengths can be successfully filtered to different ports by setting different radius of the center defect rods in the drop waveguides and high drop efficiency can be achieved by means of reflection feedbacks. The proposed filter has a cross section equal to 9.7 μm × 5.8 μm. In the designed filter, an improvement of the number of channels has been achieved. The normalized transmission spectra of this component have been studied using finite difference time domain (FDTD) method. The important parameters consider for this studies are radius of rods used in Fabry-Pérot reflectors, and radius of center defect rods in the drop waveguides. The demultiplexer we designed can easily separate the light with seven different wavelengths simultaneously. The scope of this paper lies on demultiplexer for communication systems around 1.55-μm wavelength.
机译:通过在总线波导末端使用两个Fabry-Pérot反射器,设计了一种新型的二维波长光子晶体多路分解器(WDM)。结果表明,通过在液滴波导中设置不同的中心缺陷棒半径,可以将不同波长的光成功地滤除到不同的端口,并通过反射反馈实现高液滴效率。所提出的滤波器的横截面等于9.7μm×5.8μm。在设计的滤波器中,已经实现了通道数量的改善。已使用时差有限差分法(FDTD)研究了该组分的归一化透射光谱。这项研究考虑的重要参数是Fabry-Pérot反射器中使用的棒的半径,以及液滴波导中的中心缺陷棒的半径。我们设计的解复用器可以轻松地同时分离具有七个不同波长的光。本文的范围在于用于波长为1.55-μm的通信系统的解复用器。

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