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Understanding formation of photonic bandgap edge for maximum propagation angle in all-solid photonic bandgap fibers

机译:了解全固态光子带隙光纤中最大传播角的光子带隙边缘的形成

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摘要

We propose a simple formula that gives the effective refractive index of the first-order photonic bandgap (PBG) edge for the maximum propagation angle, which corresponds to the PBG floor in all-solid photonic bandgap fibers (PBGFs). In particular, based on an antiresonant reflecting optical waveguide (ARROW) theory incorporating a phase relation between resonant modes in low-index regions for perpendicular direction of the light propagation, we show that the effective index of the PBG edge at a wavelength does not depend on the diameter and refractive index of high-index rods, and is largely determined only by the pitch when normalized rod diameters are small. In other words, it has a constant value for the structural parameters with which the PBG emerges at the same wavelength normalized by the pitch. Moreover, the source of rod-diameter and refractive-index dependences on the condition for the formation of the PBG edge is demonstrated when the diameter and the refractive index of high-index rods are effectively large. Finally, the validity of the proposed simple formula, which can be applied for any structural parameters, is verified with the vectorial solver based on the finite-element method (FEM).
机译:我们提出一个简单的公式,该公式给出最大传播角的一阶光子带隙(PBG)边缘的有效折射率,它对应于全固态光子带隙光纤(PBGFs)中的PBG基底。尤其是,根据反共振反射光波导(ARROW)理论,该模型结合了低折射率区域中谐振模式之间沿光传播垂直方向的相位关系,我们证明了PBG边缘在波长上的有效折射率与波长无关取决于高折射率棒的直径和折射率,并且在很大程度上仅由归一化棒直径小的间距决定。换句话说,它具有恒定的结构参数值,PBG以相同的波长出现在由间距归一化的相同波长处。而且,当高折射率棒的直径和折射率有效地较大时,证明了棒直径的来源和折射率取决于PBG边缘形成的条件。最后,利用基于有限元法的矢量解算器,验证了所提出的简单公式适用于任何结构参数的有效性。

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