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Birefringence Analysis of Photonic-Bandgap Fibers Using the Hexagonal Yee's Cell

机译:使用六边形Yee细胞对光子禁带光纤进行双折射分析

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A full-vectorial finite-difference scheme utilizing the hexagonal Yee's cell is used in this paper to analyze the modes of photonic-bandgap fibers with ${rm C}_{6v}$ symmetry. Because it respects the fiber's native symmetry, this method is free from any numerical birefringence. We also incorporate in it techniques for reducing the memory requirement (up to 3 to 4 times) and computational time, in particular by exploiting some of the symmetry properties of these fibers. Using sub-pixel averaging, we demonstrate quadratic convergence for the fundamental mode's effective index dependence on spatial resolution. We show that this method can be used to calculate the beat length of PBFs in which a birefringence is introduced by applying a small unidirectional stretch to the fiber cross section along one of its axes. Abrupt variations of the modeled fiber geometries with spatial resolution lead to oscillatory beat length convergence behavior. We can obtain a better estimate for beat length by averaging these oscillations. We apply a strong perturbation analysis to the fiber's unperturbed mode, calculated by our finite-difference method, to perform this averaging in a rigorous way. By fitting a polynomial to the predicted beat lengths as a function of grid spacing, we obtain an accurate estimate of the beat length at zero grid spacing. Reasonable convergence for the beat length is observed using a single processor with 8 GB of memory.
机译:本文采用利用六边形Yee单元的全矢量有限差分方案来分析具有$ {rm C} _ {6v} $对称性的光子带隙光纤的模式。因为它尊重光纤的固有对称性,所以该方法没有任何数值双折射。我们还并入了减少内存需求(最多3到4倍)和计算时间的技术,特别是通过利用这些光纤的某些对称特性。使用亚像素平均,我们演示了基本模式的有效索引对空间分辨率的依赖关系的二次收敛。我们表明,该方法可用于计算PBF的节拍长度,其中通过在光纤横截面中沿其轴之一施加较小的单向拉伸来引入双折射。具有空间分辨率的建模光纤几何形状的突然变化会导致振荡节拍长度收敛行为。我们可以通过平均这些振荡来获得更好的拍长估计。我们对通过我们的有限差分方法计算的光纤的无扰动模式进行了强大的扰动分析,以严格地执行此平均。通过将多项式拟合为预测的节拍长度作为栅格间距的函数,我们可以在零栅格间距处获得节拍长度的准确估计。使用具有8 GB内存的单个处理器,可以观察到节拍长度的合理收敛。

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