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Rare-Earth Doped Photonic Crystal Fibre Lasers and Amplifiers

机译:稀土掺杂光子晶体光纤激光器和放大器

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摘要

In this thesis, a theoretical and numerical study of the use of rare-earthdoped photonic crystal fibres as optical amplifiers and lasers, has been performed. Photonic crystal fibres or microstructured optical fibres is a new kind of optical fibre in which the cladding region typically consist of a periodic microstructure, resulting in a fibre with very different properties compared to conventional optical fibres. The properties of photonic crystals fibres are described, with focus on the advantages this technology provides compared to conventional fibres, within the area of optical amplification. The thesis also presents the basic properties of optical amplification, and describes the numerical model developed to model the behaviour of lasers and amplifiers based on photonic crystal fibres. The developed numerical tools are then used to investigate specific applications of photonic crystal fibres. Their novel properties allow for design of optical fibre amplifiers and fibre lasers with superior performance, compared to solutions based on conventional fibres. The primary applications considered are high efficiency fibre amplifiers based on index guiding photonic crystal fibres, and cladding pumped airguiding fibre lasers, based on photonic bandgap guiding fibres.
机译:本文对稀土掺杂光子晶体光纤作为光放大器和激光器的应用进行了理论和数值研究。光子晶体光纤或微结构化光纤是一种新型的光纤,其中包层区域通常由周期性的微结构组成,与常规光纤相比,其光纤的性能差异很大。描述了光子晶体光纤的特性,重点是在光放大领域,该技术与常规光纤相比具有的优势。本文还介绍了光放大的基本特性,并描述了为基于光子晶体光纤的激光器和放大器的行为建模而建立的数值模型。然后将开发的数值工具用于研究光子晶体光纤的特定应用。与基于常规光纤的解决方案相比,它们的新颖特性可以设计出性能更高的光纤放大器和光纤激光器。所考虑的主要应用是基于折射率引导光子晶体光纤的高效光纤放大器,以及基于光子带隙引导光纤的包层泵浦导气纤维激光器。

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