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Investigation on Dispersion Property of a Novel Photonic Crystal Fiber with Square Array Air Holes

机译:具有方形阵列气孔的新型光子晶体纤维分散性的研究

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The dispersion property of a novel photonic crystal fiber with square array air holes was simulated with the vectorial beam propagation method. The impacts of the pitch and hole diameter on the effective area of fundamental mode and the dispersion parameter were evaluated. The results indicate that the effective refractive index decreases and the dispersion parameter increases with air hole diameter increasing and the pitch decreasing, the structure parameters of inner three rings air hole influences the dispersion characteristics greatly. Thus the dispersion property of the photonic crystal fiber can be tailed by the structural parameters.
机译:用versial射线传播方法模拟具有方阵列空气孔的新型光子晶体纤维的分散性。评估了间距和孔径对基本模式的有效面积和分散参数的影响。结果表明,有效折射率降低,并且分散参数随空气孔径的增加而增加,并且间距减小,内部三环空气孔的结构参数大大影响了分散特性。因此,光子晶体纤维的分散性能可以通过结构参数拖动。

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