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A Modified Design of a Hexagonal Circular Photonic Crystal Fiber with Large Negative Dispersion Properties and Ultrahigh Birefringence for Optical Broadband Communication

机译:具有较大负色散特性和超高双折射的六边形圆形光子晶体光纤的改进设计,用于光宽带通信

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In this paper, we propose a modified design of a hexagonal circular photonic crystal fiber (HC-PCF) which obtains a large negative dispersion and ultrahigh birefringence simultaneously. The optical properties of the proposed HC-PCF were investigated using the finite element method (FEM) incorporated with a circular perfectly matched layer at the boundary. The simulation results showed large negative dispersion of ?1044 psm.km and ultrahigh birefringence of 4.321 × 10 ?2 at the operating wavelength of 1550 nm for the optimum geometrical parameters. Our proposed HC-PCF exhibited the desirable optical properties without non-circular air holes in the core and cladding region which facilitates the fabrication process. The large negative dispersion of the proposed microstructure over the wide spectral range, i.e., 1350 nm to 1600 nm, and high birefringence make it a suitable candidate for high-speed optical broadband communication and different sensing applications.
机译:在本文中,我们提出了一种六边形圆形光子晶体光纤(HC-PCF)的改进设计,该设计同时获得大的负色散和超高双折射。使用有限元方法(FEM)研究了建议的HC-PCF的光学特性,该方法在边界处结合了圆形的完美匹配层。仿真结果表明,在最佳几何参数下,工作波长为1550 nm时,负色散较大,约为1044 ps / nm.km,超高双折射为4.321×10λ2。我们提出的HC-PCF表现出理想的光学性能,在纤芯和包层区域没有非圆形气孔,这有利于制造过程。所提出的微结构在较大的光谱范围即1350 nm至1600 nm范围内具有较大的负色散,并且具有高双折射性,使其成为高速光宽带通信和不同传感应用的合适候选者。

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