大负色散高非线性非对称钻孔芯六方光子晶体光纤的设计

S. Biswas, Rishad Arfin, Syed Athar Bin Amir, Z. Zahir, Ashfia Binte Habib, R. Khan
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引用次数: 2

摘要

本文提出了一种具有非对称钻孔芯的六方光子晶体光纤(H-PCF)的新设计,同时实现了大的负色散和高非线性。为了对所提出的H-PCF的光学特性进行数值研究,采用了基于有限元法(FEM)的电磁求解器。在1.35 μm到1.6 μm的宽光谱范围内,通过调整设计的最佳几何参数,研究了光子光纤的色散和非线性等模态特性。结果表明,在工作波长为1.55 μm时,色散为-2013 ps/(nm.km),非线性系数为109.9 W−1km−1。我们提出的结构提供的优点之一是在制造过程中的设计灵活性,因为所提出的结构只包括周期性排列的圆形气孔。我们提出的光子结构的增强负色散和非线性使其成为高速光宽带通信和非线性光学过程的可靠候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of Highly Nonlinear Asymmetric Bored Core Hexagonal Photonic Crystal Fiber with Large Negative Dispersion
In this work, we present a novel design of hexagonal photonic crystal fiber (H-PCF) with asymmetric bored core, which simultaneously achieves large negative optical dispersion and high nonlinearity. To carry out the investigation of the optical characteristics of the proposed H-PCF numerically, electromagnetic solver based on finite element method (FEM) is employed. The modal properties of the photonic fibers such as dispersion and nonlinearity are explored over a wide spectral range from 1.35 μm to 1.6 μm by tuning the optimum geometrical parameters of the design. The numerical study shows that a significant dispersion of –2013 ps/(nm.km) with a nonlinear coefficient of 109.9 W−1km−1 is obtained at the operating wavelength of 1.55 μm. One of the advantages our proposed structure offers is the design flexibility during the fabrication process since the proposed structure comprises periodic arrangement of circular air holes only. The enhanced negative dispersion and nonlinearity of our proposed photonic structure make it a reliable candidate for high speed optical broadband communication and nonlinear optical processes.
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