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Advanced Fibre Bragg Grating and Microfibre Bragg Grating Fabrication Techniques.

机译:先进的光纤布拉格光栅和微光纤布拉格光栅制造技术。

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摘要

Fibre Bragg gratings (FBGs) have become a very important technology for communication systems and fibre optic sensing. Typically, FBGs are less than 10-mm long and are fabricated using fused silica uniform phase masks which become more expensive for longer length or non-uniform pitch. Generally, interference UV laser beams are employed to make long or complex FBGs, and this technique introduces critical precision and control issues.;In this work, we demonstrate an advanced FBG fabrication system that enables the writing of long and complex gratings in optical fibres with virtually any apodisation profile, local phase and Bragg wavelength using a novel optical design in which the incident angles of two UV beams onto an optical fibre can be adjusted simultaneously by moving just one optical component, instead of two optics employed in earlier configurations, to vary the grating pitch. The key advantage of the grating fabrication system is that complex gratings can be fabricated by controlling the linear movements of two translation stages.;In addition to the study of advanced grating fabrication technique, we also focus on the inscription of FBGs written in optical fibres with a cladding diameter of several ten's of microns. Fabrication of microfibres was investigated using a sophisticated tapering method. We also proposed a simple but practical technique to filter out the higher order modes reflected from the FBG written in microfibres via a linear taper region while the fundamental mode re-couples to the core. By using this technique, reflection from the microfibre Bragg grating (MFBG) can be effectively single mode, simplifying the demultiplexing and demodulation processes.;MFBG exhibits high sensitivity to contact force and an MFBG-based force sensor was also constructed and tested to investigate their suitability for use as an invasive surgery device. Performance of the contact force sensor packaged in a conforming elastomer material compares favourably to one of the best-performing commercial contact force sensors in catheterization applications. The proposed sensor features extremely high sensitivity up to 1.37-mN, miniature size (2.4-mm) that meets standard specification, excellent linearity, low hysteresis, and magnetic resonance imaging compatibility.
机译:布拉格光纤光栅(FBG)已成为通信系统和光纤传感的一项非常重要的技术。通常,FBG的长度小于10毫米,并且是使用熔融石英均匀相掩模制造的,对于更长的长度或不均匀的间距而言,它们变得更加昂贵。通常,干涉UV激光束用于制造长的或复杂的FBG,并且该技术引入了关键的精度和控制问题。在这项工作中,我们演示了一种先进的FBG制造系统,该系统可以在光纤中写入长而复杂的光栅,使用新颖的光学设计,几乎可以实现任何切趾曲线,局部相位和布拉格波长,其中两个UV光束入射到光纤上的入射角可以通过仅移动一个光学组件(而不是移动早期配置中使用的两个光学组件)来同时进行调整光栅间距。光栅制造系统的主要优点是可以通过控制两个平移台的线性运动来制造复杂的光栅。除了对先进光栅制造技术的研究以外,我们还着重研究了用光纤写的FBG的铭文。包层直径为几十微米。使用复杂的渐缩方法研究了微纤维的制造。我们还提出了一种简单但实用的技术,通过基本锥面重新耦合到纤芯时,可以滤除微纤维中写入的FBG反射的高阶模,并通过线性锥形区域。通过使用该技术,微纤维布拉格光栅(MFBG)的反射可以有效地变为单模,从而简化了多路分解和解调过程。; MFBG对接触力具有很高的灵敏度,并且构造并测试了基于MFBG的力传感器以研究其适合用作侵入性手术设备。封装在弹性体材料中的接触力传感器的性能优于导管插入应用中性能最好的商业接触力传感器之一。拟议中的传感器具有高达1.37-mN的极高灵敏度,符合标准规格的微型尺寸(2.4-mm),出色的线性度,低磁滞和磁共振成像兼容性。

著录项

  • 作者

    Chung, Kit Man.;

  • 作者单位

    Hong Kong Polytechnic University (Hong Kong).;

  • 授予单位 Hong Kong Polytechnic University (Hong Kong).;
  • 学科 Physics Optics.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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