Numerical Investigation of Optical Properties in Carbon Tetrachloride-Filled Photonic Crystal Fibers

Nguyen Thi Thuy, Nguyen Thi Oanh
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Abstract

In this work, we design circular lattice photonic crystal fibers using Lumerical Mode Solution software, its hollow core filled with carbon tetrachloride. Optical properties including effective refractive index, chromatic dispersion, nonlinearity, and fiber loss were investigated numerically in detail based on solving Maxwell's wave equations. The small effective mode areas of only a few µm2, and confinement loss as low as 14.799 dB/m at specific pump wavelengths were obtained. It was found that near-zero ultra-flattened chromatic dispersion with fluctuations of ±0.44 ps/nm.km spans from 1300 to 1830 nm. Three photonic crystal fibers with optimal structure and features were suggested for broadband supercontinuum generation orientation.
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四氯化碳填充光子晶体光纤中光学特性的数值研究
在这项工作中,我们使用 Lumerical Mode Solution 软件设计了圆晶格光子晶体光纤,其空心内芯填充了四氯化碳。在求解麦克斯韦波方程的基础上,对包括有效折射率、色散、非线性和光纤损耗在内的光学特性进行了详细的数值研究。结果表明,在特定的泵浦波长下,光纤的有效模式面积很小,仅为几微米2 ,禁锢损耗低至 14.799 dB/m。研究发现,1300 至 1830 nm 波长范围内的超扁平色度色散接近零,波动范围为 ±0.44 ps/nm.km。为宽带超连续发生定向提出了三种具有最佳结构和特性的光子晶体光纤。
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