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Advanced UV inscribed fibre grating structures and applications in optical sensing and laser systems

机译:高级UV刻录光纤光栅结构及其在光学传感和激光系统中的应用

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摘要

This thesis presents detailed investigation of UV inscribed fibre grating based devices and novel developments in the applications of such devices in optical sensing and fibre laser systems. The major contribution of this PhD programme includes the systematic study on fabrication, spectral characteristics and applications of different types of UV written in-fibre gratings such as Type I and IA Fibre Bragg Gratings (FBGs), Chirped Fibre Bragg Gratings (CFBGs) and Tilted Fibre Gratings (TFGs) with small, large and 45º tilted structures inscribed in normal silica fibre. Three fabrication techniques including holographic, phase-mask and blank beam exposure scanning, which were employed to fabricate a range of gratings in standard single mode fibre, are fully discussed. The thesis reports the creation of smart structures with self-sensing capability by embedding FBG-array sensors in Al matrix composite. In another part of this study, we have demonstrated the particular significant improvements made in sensitising standard FBGs to the chemical surrounding medium by inducing microstructure to the grating by femtosecond (fs) patterning assisted chemical etching technique. Also, a major work is presented for the investigation on the structures, inscription methods and spectral Polarisation Dependent Loss (PDL) and thermal characteristics of different angle TFGs. Finally, a very novel application in realising stable single polarisation and multiwavelength switchable Erbium Doped Fibre Lasers (EDFLs) using intracavity polarisation selective filters based on TFG devices with tilted structures at small, large and exact 45° angles forms another important contribution of this thesis.
机译:本文介绍了基于紫外内切光纤光栅的器件的详细研究,以及这种器件在光学传感和光纤激光系统中的应用新进展。该博士课程的主要贡献包括对不同类型的紫外线写入光纤光栅(例如I型和IA型光纤布拉格光栅(FBG),Chi光纤布拉格光栅(CFBG)和倾斜型)的制造,光谱特性和应用进行系统研究。具有小,大和45º倾斜结构的光纤光栅(TFG),刻在普通硅石纤维中。全面讨论了三种制造技术,包括全息技术,相位掩模技术和空白光束曝光扫描技术,它们被用来制造标准单模光纤中的一系列光栅。本文报道了通过在铝基复合材料中嵌入FBG阵列传感器来创建具有自感应功能的智能结构的方法。在本研究的另一部分中,我们已经证明了通过飞秒(fs)图案化辅助化学蚀刻技术在光栅中引入微结构,从而使标准FBG对化学周围介质敏感的特别显着改进。此外,还提出了一项主要工作,以研究不同角度TFG的结构,刻录方法和光谱偏振相关损耗(PDL)和热特性。最后,利用基于腔内偏振选择性滤光片的TFG器件以小,大和精确的45°角倾斜结构实现稳定的单偏振和多波长可切换掺Do光纤激光器(EDFL)的非常新颖的应用构成了本论文的另一个重要贡献。

著录项

  • 作者

    Saffari Pouneh;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 English
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