Concentric Core Fiber Design for Optical Fiber Communication

Iram Nadeem, Dong-You Choi
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引用次数: 2

Abstract

Because of rapid technological advancements, increased data rate support has become the key criterion for future communication medium selection. Multimode optical fibers and multicore optical fibers are well matched to high data rate throughput requirements because of their tendency to support multiple modes through one core at a time, which results in higher data rates. Using the numerical mode solver OptiFiber, we have designed a concentric core fiber by investigating certain design parameters, namely core diameter (μm), wavelength (nm), and refractive index profile, and as a result, the number of channels, material losses, bending losses, polarization mode dispersion, and the effective nonlinear refractive index have been determined. Space division multiplexing is a promising future technology that uses few-mode fibers in parallel to form a multicore fiber. The experimental tests are conducted using the standard second window wavelength of 1,550 nm and simulated results are presented.
光纤通信中的同心芯光纤设计
由于技术的快速发展,提高数据速率支持已成为未来通信介质选择的关键标准。多模光纤和多芯光纤可以同时通过一个芯支持多种模式,从而实现更高的数据速率,因此可以很好地满足高数据速率吞吐量的要求。利用数值模式求解器OptiFiber,通过对纤芯直径(μm)、波长(nm)和折射率分布等设计参数的研究,设计了一种同心纤芯光纤,从而确定了通道数、材料损耗、弯曲损耗、偏振模色散和有效非线性折射率。空分多路复用是一种很有前途的技术,它使用多模光纤并联形成多芯光纤。采用1550nm标准第二窗口波长进行了实验测试,并给出了仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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