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首页> 外文期刊>Journal of Lightwave Technology >Dispersion-tailored few-mode fibers: a versatile platform for in-fiber photonic devices
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Dispersion-tailored few-mode fibers: a versatile platform for in-fiber photonic devices

机译:色散量身定制的多模光纤:光纤内光子设备的多功能平台

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摘要

In-fiber devices enable a vast array of critical photonic functions ranging from signal conditioning (amplification, dispersion control) to network management (add/drop multiplexers, optical monitoring). These devices have become mainstays of fiber-optic communication systems because they provide the advantages of low loss, polarization insensitivity, high reliability, and compatibility with the transmission line. The majority of fiber devices reported to date are obtained by doping, designing, or writing gratings in the core of a single-mode fiber (SMF). Thus, these devices use the fiber only as a platform for propagating light-the device effect itself is due to some extraneously introduced material or structure (dopants for amplification, gratings for phase matching, etc.) There exists another, relatively less explored degree of freedom afforded by fibers-the ability to copropagate more than one mode. Each mode may have a uniquely defined modal dispersion and propagation characteristic. In this paper, we will describe the variety of fiber devices enabled by few-mode fibers-fibers that typically support two to four modes with suitably tailored dispersive properties. We will show that the unique dispersive properties of various modes, in conjunction with the ability to couple between them with gratings, leads to devices that offer novel solutions for dispersion compensation, spectral shaping, and polarization control, to name a few.
机译:光纤内设备可实现从信号调理(放大,色散控制)到网络管理(分插复用器,光学监控)的大量关键光子功能。这些设备提供了低损耗,偏振不敏感,高可靠性以及与传输线兼容的优点,因而成为光纤通信系统的支柱。迄今为止报道的大多数光纤设备都是通过在单模光纤(SMF)的纤芯中掺杂,设计或写入光栅来获得的。因此,这些设备仅将光纤用作传播光的平台-设备效果本身是由于某种外来引入的材料或结构(用于掺杂的掺杂剂,用于相位匹配的光栅等)引起的。光纤提供的自由-共传播多种模式的能力。每种模式可以具有唯一定义的模式色散和传播特性。在本文中,我们将描述由少模光纤实现的各种光纤设备,这些光纤通常支持具有适当量身定制的色散特性的两种至四种模式。我们将展示各种模式的独特色散特性,以及它们之间与光栅耦合的能力,将导致器件为色散补偿,光谱整形和偏振控制等提供新颖的解决方案。

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