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Highly birefringent photonic crystal fiber for dispersion compensation over E+S+C+L communication bands

机译:高双折射光子晶体光纤,可在E + S + C + L通信频带上进行色散补偿

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摘要

In this paper a hexagonal microstructure optical fiber design is presented which attains ultra-high birefringence property with high negative dispersion in a wideband transmission system. The finite element method with circular perfectly matched boundary layer is used to examine the guiding properties. According to simulation it is demonstrated that, the proposed hexagonal microstructure optical fiber (H-MOF) deals with high birefringence of 3.373×10-2. The proposed fiber achieves negative dispersion coefficient of -837.8 ps/(nm.km) at 1550 nm wavelength. As it has enhanced optical properties, this proposed fiber can be efficiently used in broadband dispersion compensation over E+S+C+L bands and further sensing applications.
机译:本文提出了一种六边形微结构光纤设计,该设计在宽带传输系统中具有超高双折射特性和高负色散。圆形完美匹配边界层的有限元方法用于检查导引性能。通过仿真证明,所提出的六角形微结构光纤(H-MOF)具有3.373×10-2的高双折射。所提出的光纤在1550 nm波长处实现负色散系数为-837.8 ps /(nm.km)。由于它具有增强的光学特性,因此可以在E + S + C + L频带上的宽带色散补偿中有效地使用此提议的光纤,并可以用于其他传感应用。

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