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A new method of modeling cladding band structure of air-guiding photonic crystal fibers

机译:气导光子晶体光纤包层结构建模的新方法

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摘要

Cladding band structure of air-guiding photonic crystal fibers with high air-filling fraction is calculated in terms of fiber shape variation. The fundamental photonic band gap dependence on structure parameters, air-filling fraction and spacing, is also investigated. The numerical results show that the band gap edges shift toward longer wavelength as the air-filling fraction is increased, whereas the relative band gap width increases linearly. For a fixed air-filling fraction, the band gap edges with respect to spacing keep constant. With this method, the simulation results agree well with the reported data. (c) 2007 Elsevier B.V. All rights reserved.
机译:根据纤维的形状变化,计算了高空气填充率的导气光子晶体纤维的包层结构。还研究了基本的光子带隙对结构参数,充气分数和间距的依赖性。数值结果表明,随着空气填充率的增加,带隙边缘向更长的波长偏移,而相对的带隙宽度线性增加。对于固定的充气比例,带隙边缘相对于间距保持恒定。使用这种方法,仿真结果与报告的数据非常吻合。 (c)2007 Elsevier B.V.保留所有权利。

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