首页> 外文期刊>Journal of Optical Communications >Proposed Square Lattice Photonic Crystal Fiber for Extremely High Nonlinearity, Birefringence and Ultra-High Negative Dispersion Compensation
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Proposed Square Lattice Photonic Crystal Fiber for Extremely High Nonlinearity, Birefringence and Ultra-High Negative Dispersion Compensation

机译:建议的方格光子晶体光纤具有极高的非线性,双折射和超高负色散补偿

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摘要

A photonic crystal fiber in square lattice architecture is numerically investigated and proposed for broadband dispersion compensation in optical transmission system. Simulation results reveal that it is possible to obtain an ultra-high negative dispersion of about -571.7 to -1889.7 (psm.km) in the wavelength range of 1340 nm to 1640 nm. Experimentally it is demonstrated that the design fiber covers a high birefringence of order 4.74 × 10~(-3) at the wavelength of 1550 nm. Here, numerical investigation of guiding properties and geometrical properties of the proposed PCF are conducted using the finite element method (FEM) with perfectly match layers. Moreover, it is established more firmly that the proposed fiber successfully compensates the chromatic dispersion of standard single mode in entire band of interest. Our result is attractive due to successfully achieve ultra-high negative dispersion that is more promisor than the prior best results.
机译:数值研究了方格结构的光子晶体光纤,提出了光传输系统宽带色散补偿的方案。仿真结果表明,可以在1340 nm至1640 nm的波长范围内获得约-571.7至-1889.7(ps / nm.km)的超高负色散。实验证明,该设计光纤在1550 nm波长处具有4.74×10〜(-3)的高双折射。在此,使用具有完美匹配层的有限元方法(FEM)对所提出的PCF的导向特性和几何特性进行了数值研究。此外,可以更牢固地确定所提出的光纤能够成功补偿整个目标频段中标准单模的色散。由于成功实现了超高负色散,因此,我们的结果具有吸引力,该色散比以前的最佳结果更具前景。

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