Design and analysis of a new photonic crystal fiber for fiber based sensor applications

R. R. Mahmud, M. Khan, S. M. Abdur Razzak
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引用次数: 3

Abstract

This monograph explores a new photonic crystal fiber (PCF) design on triangular lattice (TL) pattern for tailoring ultra flat chromatic dispersion near-zero level with high birefringence. The guiding properties of the TL-PCF are defined by applying anisotropic perfectly matched layer (PML) absorbing boundary in the finite element method (FEM). Our proposed TL-PCF is suitable for the application of highly birefringent fiber and fiber based sensors as the design offers high birefringence of 0.006±0.002 and ultra flattened near zero level dispersion of 0±2 ps.nm-1.km-1 for the bandwidth of 1.25 to 1.7 μm. The covering bands are O+E+S+C+L+U in the infrared (IF) region for the 2nd and 3rd windows.
用于光纤传感的新型光子晶体光纤的设计与分析
本文探讨了一种基于三角晶格(TL)模式的新型光子晶体光纤(PCF)设计,用于裁剪具有高双折射的近零能级超平色散。利用有限元法中的各向异性完美匹配层吸收边界定义了TL-PCF的导向特性。我们所提出的TL-PCF具有0.006±0.002的高双折射和0±2 ps.nm-1的超平坦近零色散,适用于高双折射光纤和基于光纤的传感器的应用。带宽为1.25 ~ 1.7 μm时为Km-1。第2和第3个窗口的红外(IF)覆盖波段为O+E+S+C+L+U。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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