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Investigation on the confinement loss of index-guided photonic crystal fibers in the visible spectrum

机译:可见光谱中指示指导光子晶体纤维的监视损失研究

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This paper presents a comparative study of confinement ability of two 4-ring hexagonal lattice index-guided PCFs with different air-hole spacing (pitch) in the visible spectrum. The structure of PCF is designed and analyzed by using the Finite Element Method (FEM) with anisotropic perfectly matched layers. From analysis and comparison of the two optimized PCF structures, it can be investigated that the confinement loss is very low in the structure designed with d/Λ=0.5 and Λ=1.4 µm, where the light is single mode and confined in the core for the visible region (400–700) nm. A low confinement loss and low birefringence of the order of 10−3 and 10−4 respectively are obtained for this PCF. Also the effective area is found to be nearly 2–3 µm2 and non-linearity co-efficient as 198–82 km−1w−1 respectively in the desired spectrum. This extremely high confinement ability in the visible range and non-linearity makes it promising for non-linear and sensing applications.
机译:本文介绍了两个4环六边形格子指数引导PCFS在可见光谱中具有不同空穴间距(间距)的两个4环六边形格子指数引导式PCF的比较研究。通过使用具有各向异性完美匹配的层的有限元方法(FEM)来设计和分析PCF的结构。从分析和比较两种优化的PCF结构,可以调查与D /&#x039b的结构中的限制损失非常低; = 0.5和Λ = 1.4µ m,其中光是单模,局限于可见区域(400-700)Nm的核心。对于该PCF,获得了10 − 3 和10 − 4 的低限制性损失和低的双折射率。还发现有效面积几乎是2-3µ m 2 和非线性共同高效为198-82km − 1 w − 1 分别在所需的光谱中。在可见范围和非线性的这种极高的限制能力使得非线性和传感应用具有很有希望。

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