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首页> 外文期刊>Lightwave Technology, Journal of >Ultrahigh Birefringent Photonic Crystal Fiber With Ultralow Confinement Loss Using Four Airholes in the Core
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Ultrahigh Birefringent Photonic Crystal Fiber With Ultralow Confinement Loss Using Four Airholes in the Core

机译:使用纤芯中的四个气孔的超低限制损耗的超高双折射光子晶体光纤

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摘要

A simple photonic crystal fiber (PCF) design with a rectangular array of four airholes in the core region and a traditional circular-airhole cladding is proposed in this work. The modal birefringence is induced by the asymmetry of the rectangular distribution of four airholes and/or the elliptical shape of the holes. The traditional symmetric cladding structure results in good confinement loss performance by limiting the light in the core region. Therefore, the proposed design enables simultaneous realization of high birefringence and low confinement loss. Simulations based on the full-vector finite element method (FEM) with anisotropic (PML) show that ultrahigh single-mode birefringence (~ 10-2) and ultralow confinement losses ( < 0.002 dB/km) can be achieved at 1.55 mum wavelength. Dependence study of the birefringence and losses on several key parameters is also provided. Compared to previously studied PCF with asymmetric core or cladding structures, by having just four relatively large airholes in the core, this design could be much easier to be implemented with even better performance.
机译:在这项工作中,提出了一种简单的光子晶体光纤(PCF)设计,在芯区域中具有四个气孔的矩形阵列,并使用传统的圆形气孔包层。模态双折射是由四个气孔的矩形分布的不对称和/或孔的椭圆形引起的。传统的对称包层结构通过限制纤芯区域内的光线而产生良好的限制损耗性能。因此,提出的设计能够同时实现高双折射和低限制损耗。基于具有各向异性(PML)的全矢量有限元方法(FEM)的仿真表明,在1.55微米波长下可以实现超高单模双折射(〜10-2)和超低限制损耗(<0.002 dB / km)。还提供了双折射和损耗对几个关键参数的依赖性研究。与先前研究的具有非对称纤芯或覆层结构的PCF相比,纤芯中只有四个相对较大的气孔,该设计更容易实现,并且性能更高。

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