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Surface relief D-fiber Bragg gratings for sensing applications.

机译:用于感测应用的表面浮雕D光纤布拉格光栅。

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摘要

This dissertation presents the novel creation of a surface relief fiber Bragg grating on the flat surface of a D-shaped optical fiber. In order to produce an efficient surface relief grating the grating must be etched into the surface of the glass fiber close to the core. A short etch that removes the cladding above the core is performed in order to decrease the core-to-flat distance and allow the light to interact with the grating on the flat surface. Due to the unique D-shape of the optical fiber the mechanical integrity of the fiber remains high even after the fabrication process.;The surface relief fiber Bragg grating created for this work overcomes some of the sensing challenges of traditional gratings. The major accomplishments of this dissertation are a dramatic increase in operating temperature to over 1000°C, the ability to measure multi-dimensional bend, the ability to measure material changes around the fiber such as chemical concentration, and the ability to use a Vernier effect to dramatically increase the sensors sensitivity.;In addition to the sensing applications of this work a more thorough understanding of the reflection and transmission properties of the surface relief grating is also presented. Implementation of the transfer matrix method for simulation of the gratings is also shown to be a fast and accurate modeling tool for predicting the grating response.;For traditional fiber Bragg gratings the index modulation occurs in the core of the optical fiber. While this method can produce highly reflective gratings they are not well suited for many sensing applications. For example, the operating temperature range is limited to a few hundred degrees Celsius before the index modulation returns to a more uniform index profile. Also because the gratings are created in the core of the fiber, interaction with the surrounding environment is limited.
机译:本论文提出了一种在D形光纤的平坦表面上的新型表面浮雕布拉格光栅的产生方法。为了产生有效的表面起伏光栅,必须将光栅蚀刻到靠近纤芯的玻璃纤维表面上。进行短蚀刻以去除纤芯上方的包层,以减小纤芯到扁平的距离,并允许光与平坦表面上的光栅相互作用。由于光纤具有独特的D形形状,因此即使在制造过程之后,光纤的机械完整性仍然很高。为该工作而创建的表面浮雕光纤布拉格光栅克服了传统光栅的一些传感挑战。本论文的主要成就是工作温度急剧上升到超过1000°C,具有测量多维弯曲的能力,具有测量纤维周围材料变化(例如化学浓度)的能力,以及具有游标效应的能力。除了显着提高传感器的灵敏度外,还提供了对表面起伏光栅的反射和透射特性的更全面的了解。传输矩阵方法用于仿真光栅也被证明是预测光栅响应的快速而准确的建模工具。对于传统的光纤布拉格光栅,折射率调制发生在光纤的芯中。尽管此方法可以产生高反射率的光栅,但它们并不十分适合许多传感应用。例如,在折射率调制返回到更均匀的折射率分布之前,将工作温度范围限制在几百摄氏度。同样,因为光栅是在光纤的纤芯中形成的,所以与周围环境的相互作用受到限制。

著录项

  • 作者

    Lowder, Tyson L.;

  • 作者单位

    Brigham Young University.;

  • 授予单位 Brigham Young University.;
  • 学科 Engineering Electronics and Electrical.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 201 p.
  • 总页数 201
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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