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Modelling of photonic crystal fiber based on layered inclusions

机译:基于分层夹杂物的光子晶体光纤建模

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Photonic crystal fibers often consist of rotationally symmetric inclusions in an otherwise uniform background medium. The band diagrams and modes of such structures can be efficiently calculated using geometry-specific methods that exploit this rotational symmetry. Until now, these have only been applied to fibers in which the inclusions are circular and have a uniform refractive index. Here, we generalize this to arbitrary rotationally symmetric inclusions using a transfer matrix approach, and we implement this approach in an approximate scalar method, which is valid for low-index contrasts and in the rigorous Rayleigh multipole method. We apply the methods to structures incorporating inclusions with graded refractive indices and to structures incorporating metal rings.
机译:光子晶体纤维通常由旋转对称的夹杂物组成,而这些夹杂物本来是均匀的背景介质。可以使用利用这种旋转对称性的特定于几何的方法来有效地计算此类结构的能带图和模式。迄今为止,这些仅应用于夹杂物为圆形且折射率均匀的纤维。在这里,我们使用转移矩阵方法将此方法推广到任意旋转对称包含物,然后在近似标量方法中实施此方法,该方法对低折射率对比度和严格的瑞利多极方法有效。我们将这些方法应用于包含渐变折射率夹杂物的结构以及包含金属环的结构。

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