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Cladding-pumped neodymium and ytterbium doped fibre lasers

机译:包层泵浦钕和掺镱光纤激光器

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摘要

This thesis details my work on both high-power neodymium-doped fibre lasers (at around 1.1 µm and around 0.9 µm) and ytterbium-doped fibre lasers (at 980 nm). The main subjects were the study of efficient three-level compact continuous-wave fibre lasers and their power scaling.Ytterbium-doped fibre lasers (YDFLs) with emission at 980 nm were also investigated. I, in collaboration, obtained the highest reported output power from any compact single-mode 980 nm laser to this point. For this, speciality fibres, with special core and inner-cladding designs, were developed, notably the jacketed-air-clad (JAC) fibre, with properties that are not attainable in conventional double-clad fibres. The JAC structure allows for a small pump waveguide (inner cladding) with a high NA. This is an essential advantage for lasers operating on a transition to the ground state, such as Yb. There are many considerations involved with making practical, reliable, and usable 980 nm fibre devices. The integration of all required functions into a single fibre device with a small, high-NA, inner cladding is a challenge that required a large research effort to solve. A thorough and careful design and characterisation effort led to the milestone achievement of an all-fibre pigtailed fibre laser at 980 nm, which later on was used in practice as a pump source for an 8-channel DFB fibre laser transmitter array. In addition, a 980 nm Q-switched fibre laser is realised in a cladding-pumped configuration for the first time.Furthermore, a fibre laser cladding-pumped by a high brightness intra-cavity beam-combined diode was demonstrated. Here, a multi-stripe, multi-mode diode was set-up for intra-cavity beam combination and used for cladding-pumping of fibre lasers with a small inner cladding. This high-brightness pumping scheme with a multi-emitter diode appears very attractive for power scaling of three-level fibre lasers.
机译:本文详细介绍了我在高功率掺钕光纤激光器(约1.1 µm和约0.9 µm)和掺光纤激光器(在980 nm)上的工作。主要研究有效的三能级紧凑型连续波光纤激光器及其功率定标。还研究了在980 nm处发射的掺do光纤激光器(YDFL)。我协作获得了迄今为止所有紧凑型单模980 nm激光器的最高报告输出功率。为此,开发了具有特殊纤芯和内包层设计的特种纤维,特别是夹套空气包覆(JAC)纤维,其性能是传统双包层纤维无法达到的。 JAC结构允许具有高NA的小型泵浦波导(内部包层)。对于工作在过渡到基态(例如Yb)的激光器来说,这是一个重要的优势。制造实用,可靠和可用的980 nm光纤设备涉及许多因素。将所有必需的功能集成到具有小型高NA内部包层的单光纤设备中是一项挑战,需要大量的研究工作才能解决。透彻,仔细的设计和特性描述工作成就了980 nm全光纤尾纤光纤激光器的里程碑式成就,后来在实践中将其用作8通道DFB光纤激光器阵列的泵浦源。此外,首次实现了980 nm调Q光纤激光器在包层泵浦配置中的应用。此外,还演示了由高亮度腔内光束组合二极管进行包层泵浦的光纤激光器。在这里,设置了一个多条纹,多模二极管用于腔内光束组合,并用于内包层小的光纤激光器的包层泵浦。这种具有多发射极二极管的高亮度泵浦方案对于三级光纤激光器的功率定标而言非常有吸引力。

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  • 年度 2004
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  • 正文语种 {"code":"en","name":"English","id":9}
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