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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Photonic crystal power splitter and wavelength multi/demultiplexer based on directional coupling
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Photonic crystal power splitter and wavelength multi/demultiplexer based on directional coupling

机译:基于定向耦合的光子晶体功率分配器和波长复用/解复用器

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摘要

In this paper, first by applying a theoretical approach (coupled-mode theory and one-dimensional scattering theory model) as well as a numerical approach, the transmission properties of different right angle bend geometries are investigated. Then using optimized bends, a two-dimensional photonic crystal power splitter based on directional coupling is analyzed. Effects of changing coupling length and distance between parallel waveguides on output transmissions are investigated. By further splitting the power in each branch a power splitter with four output branches is proposed. Our numerical simulation with a finite-difference time-domain (FDTD) technique shows that total transmission up to 96% and 92% is obtained for power splitters with two and four output branches, respectively, throughout the calculated coupling lengths. As another application a compact size wavelength multi/demultiplexer composed of optimized 90 degrees bent waveguides and directional couplers is designed.
机译:本文首先采用理论方法(耦合模式理论和一维散射理论模型)以及一种数值方法,研究了不同直角弯曲几何形状的透射特性。然后使用优化的弯曲,分析了基于定向耦合的二维光子晶体功率分配器。研究了改变平行波导之间的耦合长度和距离对输出传输的影响。通过在每个分支中进一步分配功率,提出了具有四个输出分支的功率分配器。我们使用时域有限差分(FDTD)技术进行的数值模拟表明,在整个计算的耦合长度内,具有两个和四个输出分支的功率分配器的总传输率分别高达96%和92%。作为另一种应用,设计了一种紧凑型波长多路/多路复用器,它由优化的90度弯曲波导和定向耦合器组成。

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