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Proposal for highly birefringent broadband dispersion compensating octagonal photonic crystal fiber

机译:高双折射宽带色散补偿八角形光子晶体光纤的提案

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摘要

In this paper, we propose and demonstrate a highly birefringent photonic crystal fiber based on a modified octagonal structure for broadband dispersion compensation covering the S, C, and L-communication bands i.e. wavelength ranging from 1460 to 1625 nm. It is shown theoretically that it is possible to obtain negative dispersion coefficient of about -400 to -725 ps/(nm km) over S and L-bands and a relative dispersion slope (RDS) close to that of single mode fiber (SMF) of about 0.0036 nm"1. According to simulation, birefringence of the order 1.81 × 10~(-2) is obtained at 1.55 μm wavelength. Moreover, effective area, residual dispersion, effective dispersion, confinement loss, and nonlinear coefficient of the proposed modified octagonal photonic crystal fiber (M-OPCF) are also reported and discussed.
机译:在本文中,我们提出并演示了一种高双折射光子晶体光纤,该光纤基于改良的八边形结构,用于宽带色散补偿,覆盖S,C和L通信频段,即波长范围为1460至1625 nm。从理论上证明,在S和L波段上可以获得约-400至-725 ps /(nm km)的负色散系数,并且其相对色散斜率(RDS)接近单模光纤(SMF)的色散斜率约0.0036 nm“ 1。根据仿真,在1.55μm波长下获得的双折射为1.81×10〜(-2)。此外,所提议的有效面积,残余色散,有效色散,限制损耗和非线性系数还报道和讨论了改性八边形光子晶体光纤(M-OPCF)。

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