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Characterization and application of optical fibers: 1. Application of optical fibers in gas concentration and radiation dose measurements. 2. Polarization effects in fiber communication systems.

机译:光纤的表征和应用:1.光纤在气体浓度和辐射剂量测量中的应用。 2.光纤通信系统中的偏振效应。

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摘要

The thesis consists of two research directions: Optical fiber applications in gas concentration and radiation dose measurements; and polarization effects in fiber optic communication systems.; Part I of the thesis presents two optical fiber applications. (1) An infrared (IR) fiber bundle has been designed and fabricated to measure gas concentrations in a chemical vapor deposition (CVD) chamber using Fourier transform infrared spectroscopy. This fiber bundle covers the IR range from 0.5 to 20 μm and reduces the light beam divergence in the CVD chamber, which makes it possible to measure gas concentrations in a region near the substrate surface. Semi-ellipsoid mirrors have been designed and used to increase the collection efficiency of infrared radiation and to compensate the loss introduced by the fiber bundle. (2) A fiber optic radiation sensor based on radiation-induced fiber loss is reported. The gamma radiation-induced loss spectra in various fibers have been studied. Among all the fibers tested, 5% P-doped fiber shows the highest sensitivity to gamma radiation. The wavelength and dose rate dependence of radiation-induced loss in 5% P-doped fiber are investigated and the possibility of using this fiber as a radiation sensor for radiation therapy is discussed.; Part II of the thesis examines two polarization effects, polarization mode dispersion (PMD) and polarization dependent loss (PDL), in fiber optic communication systems based on the waveplate models. A new waveplate model, capable of generating any PMD and PDL values, is proposed to overcome the limitations of the conventional waveplate model. Using both models the statistical distributions of PDL and differential group delay (DGD) have been studied considering the presence of biased elliptical birefringence. The principal state of polarization (PSP) of an optical pulse is proposed for a fiber having both PMD and PDL. PMD and PDL of a pulse for a fiber consisting of two polarization maintaining fiber segments are calculated, and the pulse distortions due to PMD and PDL are analyzed. PMD and PDL impact on digital communication systems have been studied in terms of system Q factor, bit error rate (BER) and system outage probability. The acceptable PMD values in a system with PDL are discussed for various power margins. The Q factor distributions due to PDL and its combination with PMD have been measured experimentally and compared to numerical simulations.
机译:本论文包括两个研究方向:光纤在气体浓度和辐射剂量测量中的应用;光纤在气体浓度和辐射剂量测量中的应用。以及光纤通信系统中的偏振效应。论文的第一部分介绍了两种光纤应用。 (1)设计并制造了红外(IR)纤维束,以使用傅里叶变换红外光谱法测量化学气相沉积(CVD)室中的气体浓度。该纤维束覆盖的红外范围为0.5至20μm(斜体),并减小了CVD室中的光束发散度,这使得可以测量靠近基板表面的区域中的气体浓度。已经设计并使用了半椭圆形反射镜,以提高红外辐射的收集效率并补偿由光纤束引入的损耗。 (2)报告了一种基于辐射引起的光纤损耗的光纤辐射传感器。已经研究了各种纤维中伽马射线引起的损耗光谱。在所有测试的光纤中,掺有5%P的光纤对伽玛射线的敏感性最高。研究了在5%P掺杂的光纤中辐射引起的损耗的波长和剂量率依赖性,并讨论了将该纤维用作辐射治疗的辐射传感器的可能性。本文的第二部分研究了基于波片模型的光纤通信系统中的两种偏振效应,即偏振模色散(PMD)和偏振相关损耗(PDL)。为了克服传统波片模型的局限性,提出了一种能够产生任何PMD和PDL值的新波片模型。考虑到存在偏倚的椭圆双折射,使用这两个模型研究了PDL和差分群时延(DGD)的统计分布。对于具有PMD和PDL的光纤,提出了光脉冲的偏振态(PSP)的主要状态。计算由两个保偏光纤段组成的光纤的脉冲的PMD和PDL,并分析由于PMD和PDL引起的脉冲失真。从系统Q因子,误码率(BER)和系统中断概率的角度研究了PMD和PDL对数字通信系统的影响。针对各种功率裕度,讨论了具有PDL的系统中可接受的PMD值。通过实验测量了由PDL及其与PMD组合导致的Q因子分布,并将其与数值模拟进行了比较。

著录项

  • 作者

    Lu, Ping.;

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 231 p.
  • 总页数 231
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

  • 入库时间 2022-08-17 11:46:03

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