用于光通信的非线性矩形光子晶体光纤(PCF)

S. K. Tripathy, Achary Jsn, N. Muduli, G. Palai
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引用次数: 8

摘要

利用二维时域有限差分技术研究了BK7玻璃内、外包层矩形PCF结构的有效模场面积、高非线性系数、约束损耗和色散特性。PCF结构以周期阵列的方式设计螺距和气孔直径。分析了PCF结构的模场面积、非线性系数、约束损耗和色散等特性。在较宽的波长范围内,研究了E…11.1 d Λ、21 Λ Λ和d1/d2等参数的变化。在1.55 μm波长处,矩形PCF结构的非线性系数(γ=36.98 W-1km-1)略高于高度非线性的硅光子晶体光纤(γ=35 W-1km-1),模场面积(Aeff ~ 2.8 μm2)几乎相同。这一结果在超连续谱的产生和非线性光纤中具有重要意义。
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Nonlinear Rectangular Photonic Crystal Fiber (PCF) for Optical Communication Exclusively Super Continuum Generation
A rectangular PCF structure in BK7 glass with inner and outer cladding is used to investigate effective mode field area, high nonlinear coefficient, and confinement loss and dispersion property using 2D FDTD technique. The PCF structure is purposed to design with pitches and air hole diameter in a periodic array fashion. The different properties of PCF structure like mode field area, nonlinear coefficient, confinement loss and dispersion are to be analyzed. The variation is investigated with change of different parameters like E…1 1 1 d Λ , 2 1 Λ Λ , and d1/d2 for a wide range of wavelength. The proposed rectangular PCF structure has slightly more nonlinear coefficient (γ=36.98 W-1km-1) than the highly nonlinear silica photonic crystal fiber (γ=35 W-1 km-1) at a wavelength of 1.55 μm with almost same mode field area (Aeff ~ 2.8 μm2). This result seems to be important in super-continuum generation and nonlinear fiber optics.
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