通信波段超高负色散、高双折射非线性单模光子晶体光纤(CT-PCF)的设计与数值分析

Amit Halder, Wahiduzzaman Emon, Md. Shamim Anower, Md. Riyad Tanshen, Md. Forkan, Md. Sharif Uddin Shajib
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引用次数: 0

摘要

本文介绍了一种高效的CT-PCF(核心调谐光子晶体光纤)的发展,具有实质性的双折射,专门用于高比特率通信和传感,同时最大限度地减少信号损失。该设计采用了改进的宽带色散补偿结构,优化了在1360nm至1625nm波长范围内的E、S、C和L通信频段的运行。值得注意的是,CT-PCF在1550 nm处具有2.372 × 10-2的双折射率,优于传统的PCF结构。使用高阶模消光比(HOMER)方法评估单模性能,显示在1550 nm处的峰值HOMER值为104。此外,在1550 nm处,CT-PCF表现出优异的非线性特性,y极化的非线性系数高达50.74 W-1⋅Km-1。与现有设计相比,所提出的CT-PCF具有优越的性能指标和光学特性。另外,在-3534 ps/(nm⋅km)下测量了CT-PCF在1550 nm处的y偏振色散系数。总的来说,CT-PCF代表了一个重大的进步,在性能指标和光学特性方面优于现有系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Numerical Analysis of Ultra-High Negative Dispersion, Highly Birefringent Nonlinear Single Mode Core-Tune Photonic Crystal Fiber (CT-PCF) over Communication Bands
This paper presents the development of a highly efficient CT-PCF (Core-Tune Photonic Crystal Fiber) with substantial birefringence, tailored for applications in high-bit-rate communication and sensing while minimizing signal loss. The design incorporates a modified broadband dispersion compensating structure, optimized for operation across the E, S, C, and L communication bands within a wavelength range spanning 1360 nm to 1625 nm. Notably, the CT-PCF demonstrates a remarkable birefringence of 2.372 × 10-2 at 1550 nm, surpassing traditional PCF structures. Single-mode performance is evaluated using the Higher Order Mode Extinction Ratio (HOMER) method, revealing a peak HOMER value of 104 at 1550 nm. Furthermore, at 1550 nm, the CT-PCF exhibits exceptional nonlinear characteristics, featuring a high nonlinearity of 50.74 W-1⋅Km-1 for y polarization. In comparison to existing designs, the proposed CT-PCF exhibits superior performance metrics and optical characteristics. Additionally, the y polarization dispersion coefficient of the CT-PCF at 1550 nm is measured at -3534 ps/(nm⋅km). Overall, the CT-PCF represents a significant advancement, outperforming established systems in terms of performance metrics and optical properties.
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