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Analysis of Dispersion and Nonlinear Property in Doping Defected Core Spiral Photonic Crystal Fiber

机译:掺杂变形纤芯螺旋光子晶体光纤的色散和非线性特性分析

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We propose a novel nearly zero-dispersion fiber (NZDF) at the operating wavelength based on GeO2 doped SiO2 square defected core spiral photonic crystal fiber (dd-SPCF). The 2-D finite element method with perfectly matched layer boundary condition is introduced to investigate the guiding properties using COMSOL Multiphysics 4.2.0.150. The angular displacement and diameter of circular air holes of spiral arms in the designed dd-SPCF have been tuned to offer near zero dispersion as well as low effective area. The proposed dd-SPCF shows promising dispersion characteristics (-0.000169 ps/km-nm) with very low effective area (2.6516μm2) and high nonlinear 76.44 W-1km-1 parameter at operating wavelength 1.55 μm, making it a suitable candidate for chromatic dispersion controller and nonlinear optical applications.
机译:我们提出了一种基于GeO2掺杂的SiO2方形缺陷芯螺旋光子晶体光纤(dd-SPCF)的工作波长下的近零色散光纤(NZDF)。引入具有完全匹配的层边界条件的二维有限元方法,以研究使用COMSOL Multiphysics 4.2.0.150的导向特性。设计的dd-SPCF中螺旋臂的圆形气孔的角位移和直径已经过调整,以提供接近零的色散和低有效面积。拟议的dd-SPCF具有令人满意的色散特性(-0.000169 ps / km-nm),有效面积非常小(2.6516μm2),在工作波长1.55μm处具有很高的非线性76.44 W-1km-1参数,使其非常适合用作色散色散控制器和非线性光学应用。

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