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Design and fabrication of low-loss broadband transmission filters for dense wavelength-division multiplexing networks

机译:用于密集波分复用网络的低损耗宽带传输滤波器的设计与制造

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We present a method to design broadband optical transmission filters from complex spectrum profiles, for application in dense wavelength-division multiplexing (DWDM) systems. A discrete inverse scattering method, known as layerpeeling, is used to reconstruct a long-period fibre grating (LPG) structure from a specified realisable complex spectrum by a direct solution of the coupled-mode equations, while simultaneously determining the physical properties of the layered structure. The low algorithm complexity, and relative short computation time when compared to classical grating analysis techniques, are the main advantages of the layer-peeling method. Results obtained from the layer-peeling method, are optimised using the flip-flop refinement method to ease the fabrication process. We also present a method to manufacture symmtrically-written LPGs in optical fibre. The fabrication process is based on the pointby- point method using a continuous-wavelength (CW) carbondioxide (CO2) laser to induce the necessary index changes in the fibre core.
机译:我们介绍了一种从复杂的频谱轮廓设计宽带光传输滤波器的方法,用于在密集波分复用(DWDM)系统中的应用。一种可离散的逆散射方法,称为LayerPeeling,用于通过耦合模式方程的直接解决方案重建从指定的可实现的复谱的长期光纤光栅(LPG)结构,同时确定分层的物理属性结构体。与经典光栅分析技术相比,低算法复杂性和相对短的计算时间,是层剥离方法的主要优点。使用触发器细化方法优化从层剥离方法获得的结果,以便于制造工艺。我们还提出了一种在光纤中制造对称写入的LPG的方法。制造过程基于使用连续波长(CW)碳二氧化碳(CO 2 )激光器的尖点方法,以诱导光纤核心的必要指标变化。

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