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Double-cladding structure dependence of guiding characteristics in six-fold symmetric photonic quasi-crystal fiber

机译:六重对称光子准晶体光纤中导引特性的双包层结构依赖性

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In this work, the double-cladding (DC) structure dependence of guiding characteristics in six-fold symmetric photonic quasi-crystal fiber (PQF) is investigated. Three PQFs featuring one, two and three rings of inner air holes are considered. Numerical results show that with the increase of inner air-filling fraction to around 0.65, the confinement loss begins hopping. The confinement loss varies very slightly when the outer air-filling fraction is less than 0.3, and then presents an exponential decrease with the fraction increasing. In addition, the dispersion of DC-PQF can be made flattened and near-zero with the inner air-filling fraction about 0.3-0.4 despite what the ring number is. Three distinct bands of effective area and nonlinear coefficient can be achieved for three types of inner cladding and there exists the same hopping phenomenon as the confinement loss. This investigation is helpful for balancing fiber performance parameters and providing a guidance for engineering specific fiber.
机译:在这项工作中,研究了六重对称光子准晶体光纤(PQF)中引导特性的双包层(DC)结构依赖性。考虑具有三个,一圈,两圈和三圈内部气孔的PQF。数值结果表明,随着内部充气比例增加到0.65左右,约束损失开始跳跃。当外部空气填充率小于0.3时,限制损失变化很小,然后随着分数的增加呈指数下降。另外,尽管环数是多少,DC-PQF的色散也可以变得平坦且接近零,内部空气填充率约为0.3-0.4。三种类型的内包层可以实现三个不同的有效面积带和非线性系数,并且存在与限制损耗相同的跳变现象。该研究有助于平衡光纤性能参数,并为工程专用光纤提供指导。

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