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Characteristics of photonic crystal fibers with different lattices: Realization of constant air percentage by fixing air-filling fraction

机译:不同格子光子晶体纤维的特性:通过固定空气填充馏分实现恒定空气百分比

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摘要

The mode properties of solid-core photonic crystal fibers (PCFs) having square, pentagonal, hexagonal, octagonal, nonagonal, decagonal, and dodecagonal lattice formats with uniform air-filling fractions (AFFs) have been evaluated by a full-vector finite-element method using the software COMSOL Multiphysics 4.3. Irrespective of the hole-to-hole spacing for a particular type of lattice, the ratio of air-hole radii of two PCFs having different AFFs is a constant. The ratio of air-hole radii of a pair of PCFs consisting of different lattice types is also found to be constant if the AFF is the same. With dependence on value of AFF used the effect of the order of lattice on the mode area of PCFs exhibit a reversal characteristic while approaching higher order. The effective nonlinear coefficient has been found to be maximized for octagonal PCFs. A reduction in confinement loss to the order of 10(-6) has been observed for higher order PCFs with increased AFF. The variation of the effective area with AFF indicates that it almost reaches saturation for higher ordered structures, but its magnitude is found to decrease with increasing AFF. A flattened dispersion is observed for square PCFs over a wide wavelength range.
机译:具有平方,五边形,六边形,八角形,非形,虚构和十二段晶格形式的固体光子晶体纤维(PCF)的模式性质已经通过全矢量有限元评估具有均匀的空气填充分数(AFFS)使用软件COMSOL Multiphysics 4.3的方法。无论特定类型的晶格都有空穴间隔,两个PCF的空气孔半径的比率是恒定的。如果AFF是相同的,也发现由不同晶格类型组成的一对PCF的空穴半径的比率是恒定的。依赖于AFF的价值使用,使用晶格顺序的效果在PCF的模式区域上表现出反转特性,同时接近更高阶。已发现有效的非线性系数最大化用于八角形PCF。随着较高的PCFS增加,已经观察到10(-6)令的限制损失减少。有效区域的变化表明它几乎达到了更高的有序结构的饱和,但是发现其幅度随着越来越多的方式而降低。在宽波长范围内观察到方形PCF的平坦分散体。

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