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少模光纤中的瑞利散射。

Rayleigh scattering in few-mode optical fibers.

作者信息

Wang Zhen, Wu Hao, Hu Xiaolong, Zhao Ningbo, Mo Qi, Li Guifang

机构信息

School of Precision Instrument and Optoelectronic Engineering, Tianjin University, Tianjin 300072, China.

Key Laboratory of Optoelectronic Information Science and Technology, Ministry of Education, Tianjin 300072, China.

出版信息

Sci Rep. 2016 Oct 24;6:35844. doi: 10.1038/srep35844.

Abstract

The extremely low loss of silica fibers has enabled the telecommunication revolution, but single-mode fiber-optic communication systems have been driven to their capacity limits. As a means to overcome this capacity crunch, space-division multiplexing (SDM) using few-mode fibers (FMF) has been proposed and demonstrated. In single-mode optical fibers, Rayleigh scattering serves as the dominant mechanism for optical loss. However, to date, the role of Rayleigh scattering in FMFs remains elusive. Here we establish and experimentally validate a general model for Rayleigh scattering in FMFs. Rayleigh backscattering not only sets the intrinsic loss limit for FMFs but also provides the theoretical foundation for few-mode optical time-domain reflectometry, which can be used to probe perturbation-induced mode-coupling dynamics in FMFs. We also show that forward inter-modal Rayleigh scattering ultimately sets a fundamental limit on inter-modal-crosstalk for FMFs. Therefore, this work not only has implications specifically for SDM systems but also broadly for few-mode fiber optics and its applications in amplifiers, lasers, and sensors in which inter-modal crosstalk imposes a fundamental performance limitation.

摘要

二氧化硅光纤极低的损耗推动了电信革命,但单模光纤通信系统已逼近其容量极限。作为克服这一容量瓶颈的手段,利用少模光纤(FMF)的空分复用(SDM)已被提出并得到验证。在单模光纤中,瑞利散射是光损耗的主要机制。然而,迄今为止,瑞利散射在少模光纤中的作用仍不明确。在此,我们建立并通过实验验证了少模光纤中瑞利散射的通用模型。瑞利背向散射不仅设定了少模光纤的固有损耗极限,还为少模光时域反射仪提供了理论基础,该技术可用于探测少模光纤中由微扰引起的模式耦合动力学。我们还表明,前向模间瑞利散射最终为少模光纤的模间串扰设定了基本限制。因此,这项工作不仅对空分复用系统具有特定意义,而且对少模光纤光学及其在放大器、激光器和传感器中的应用具有广泛意义,在这些应用中,模间串扰对性能构成了基本限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/219b/5075780/878b3ee44d62/srep35844-f1.jpg

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