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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >An enhanced effective mode area fluorine doped octagonal photonic crystal fiber with extremely low loss
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An enhanced effective mode area fluorine doped octagonal photonic crystal fiber with extremely low loss

机译:一种增强的有效模式面积氟掺杂八角形光子晶体纤维,极低损失

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摘要

In our paper an enhanced effective mode area octagonal photonic crystal fiber (PCF) is presented. This PCF ensures large effective mode area along with ultra-low confinement loss and bending loss. Both the elimination of air-holes from the rings near the core region and inclusion of low index fluorine doped silica rods in an octagonal pattern are the vital design features. We have used full vectorial finite element method (FEM) based software with circularly perfectly matched layer (PML) to simulate the guiding properties of PCF. Our proposed fiber achieves effective mode area of 1110?μm2. Moreover, it offers ultra-low confinement loss of 1.14?×?10?15?dB/m and can be bent as small as 30?cm without any significant bending loss of 6.49?×?10?9?dB/m. The PCF also ensures low non-linearity with small amount of splice loss. However, our proposed PCF can be used in applications like fiber amplifiers and lasers.
机译:在本文中,提出了一种增强的有效模式区域八角形光子晶体纤维(PCF)。 该PCF可确保大型有效模式区域以及超低限速损耗和弯曲损耗。 消除来自核心区域附近的环的空气孔和以八边形图案的含有低指数氟掺杂二氧化硅棒是重要的设计特征。 我们使用了基于循环完美匹配的层(PML)的完整矢量有限元方法(FEM)软件来模拟PCF的引导性。 我们所提出的纤维达到1110Ωμm2的有效模式面积。 此外,它提供了1.14的超低限量损失1.14?×10?15?DB / M,并且可以弯曲为30Ω·厘米,没有任何显着的弯曲损失为6.49?×10?9?db / m。 PCF还确保具有少量拼接损耗的低非线性。 但是,我们所提出的PCF可用于光纤放大器和激光器等应用。

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