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Cylinder gratings in conical incidence with applications to modes of air-cored photonic crystal fibers - art. no. 056604

机译:圆锥入射的圆柱光栅及其在空芯光子晶体光纤模式中的应用-艺术没有。 056604

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摘要

We develop a formulation for cylinder gratings in conical incidence, using a multipole method. The theory, and its numerical implementation, is applied to two-dimensional photonic crystals consisting of a stack of one-dimensional gratings, each characterized by its plane wave scattering matrix. These matrices are used in combination with Bloch's theorem to determine the band structure of the photonic crystal from the solution of an eigenvalue problem. We show that the theory is well adapted to the difficult task of locating the complete band gaps needed to support air-guided modes in microstructured optical fibers, that is, optical fibers in which the confinement of light in a central air hole is achieved by photonic band-gap effects in a periodic cladding comprising a lattice of air holes in a glass matrix. [References: 38]
机译:我们使用多极方法开发了圆锥入射圆柱光栅的配方。该理论及其数值实现被应用于由一维光栅堆叠组成的二维光子晶体,每个光栅的特征在于其平面波散射矩阵。这些矩阵与Bloch定理结合使用,可以根据特征值问题的解决方案确定光子晶体的能带结构。我们表明,该理论非常适合于在微结构化光纤中定位支撑空气引导模式所需的完整带隙的艰巨任务,也就是说,通过光子将光限制在中央气孔中的光纤周期性包层中的带隙效应,该包层包括玻璃基质中的气孔格子。 [参考:38]

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