微结构光子晶体光纤的研究与仿真

Ahmed Al-Muraeb, H. Abdel-Aty-Zohdy
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引用次数: 1

摘要

光子晶体光纤(PCF)具有高非线性、四波混频和保偏等特点。这些特性为光电元件(如多通道滤波器、PCF激光器、PCF放大器和可调谐(多波长)光纤激光器)提供了新的改进和解决方案。本文采用平面波展开(PWE)方法,研究并模拟了一种基于传播常数纵向分量固定值的有缺陷方形光子晶格(PCL)微结构光纤。考虑的PCL参数为:结构周期a = 1 μm;元件半径= 0.2 μm;背景材料相对介电常数= 2.1316;元件相对介电常数= 1;平面波数= 3;每个单元格的网格节点数= 30(每个x & y方向);严格周期(缺陷)结构的单元胞尺寸= 30 × 30个节点;缺陷结构的胞元尺寸= 5 ×严格周期结构的胞元尺寸;缺陷位置在中心。计算结果包括模场分布、介电常数差变化、平面波数和传播常数的影响。结果和相关的影响是突出和讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study and simulation of microstructured photonic crystal optical fiber
Photonic Crystal Fibers (PCF) have interesting features such as high non-linearity, four-wave mixing, and polarization-maintaining. These features offer new improvements and solutions for optoelectronic elements such as multi-channel filters, PCF lasers, PCF amplifiers, and tunable (multi-wavelength) fiber lasers. This work presents study and simulation using MATLAB® for a microstructured optical fiber based on defected square Photonic Crystal Lattice (PCL) with fixed value of longitudinal component of propagation constant, deploying Plane Wave Expansion (PWE) method. The PCL parameters considered are: structure period a = 1 μm; element radius = 0.2 μm; background material relative permittivity = 2.1316; element relative permittivity = 1; number of plane waves = 3; number of mesh nodes per unit cell = 30 (in each x & y directions); unit cell size of strictly periodic (defectless) structure = 30 × 30 nodes; unit cell size of the defected structure = 5 × unit cell size of strictly periodic structure; defect location is at center. The paper results include modes field distribution, and effects of: permittivity difference change, number of plane waves, and propagation constant. The results and the associated effects are highlighted and discussed.
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