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Tunable multi-wavelength fiber lasers based on novel fiber-optic components.

机译:基于新型光纤组件的可调谐多波长光纤激光器。

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摘要

Multi-wavelength laser sources are of great interest in optical communications, spectroscopic measurements, optical sensors, and biomedical images and diagnoses. As the number and complexity of wavelength division multiplexing channels increase, multi-wavelength generation technology becomes more important in the optical communication systems. However, the tunability and application of multi-wavelength output of conventional systems remain quite limited.; In this dissertation, tunable multi-wavelength lasers are proposed to achieve simultaneous multiple wavelength lasing in a single all-optical fiber laser cavity. The single cavity laser system is composed of two main fiber optic sections that include (1) comb filter section to define multiple lasing wavelengths, and (2) cavity section to provide the gain at several wavelengths simultaneously.; As a comb filter, cascaded long period fiber gratings interferometer and fiber Sagnac loop interferometer are theoretically and experimentally demonstrated for fast wavelength tuning and discrete channel space tuning. To fabricate high performance fiber gratings devices, specially designed optical fibers are fabricated with a novel method, and the mechanism of refractive index change is discussed rigorously. In regard to the polarization dependency of polarization-maintaining fiber, the absolute wavelength and relative channel space of transmission spectrum are controlled by adjusting the effective fiber length in Sagnac loop filter.; Multi-wavelength lasings are demonstrated in both erbium-doped fiber ring cavity and Raman fiber ring cavity configurations. In the case of the erbium-doped fiber ring laser, both continuous wave and pulsed mode outputs are considered for various laser operations and applications. Several designs of fiber Raman laser ring laser are developed based on a broad generation of cascaded Raman Stokes wave and nonlinear phenomena. Detailed numerical models are analysed to optimise the laser cavity.; Absolute wavelength tuning and the relative channel space tuning of multi-lasing peaks are demonstrated through the control of optical fiber comb filter, and other characteristics of the lasers are demonstrated. The applications of tunable multi-wavelength laser are also discussed for an optical soliton pulse-train generator, an interleaved wavelength-selective switch, a fast wavelength-swept laser, a biomedical optical coherence tomography source, a temperature and strain sensor, and a differential absorption lidar.
机译:多波长激光源在光学通信,光谱测量,光学传感器以及生物医学图像和诊断中引起了极大的兴趣。随着波分复用信道的数量和复杂性的增加,多波长生成技术在光通信系统中变得越来越重要。然而,常规系统的多波长输出的可调谐性和应用仍然十分有限。本文提出了一种可调谐的多波长激光器,以在单个全光纤激光器腔体中同时实现多波长激射。单腔激光器系统由两个主要的光纤部分组成,包括(1)梳状滤波器部分以定义多个激光波长,(2)腔部分同时提供多个波长的增益。作为梳状滤波器,级联的长周期光纤光栅干涉仪和光纤Sagnac环路干涉仪在理论上和实验上都可以用于快速波长调谐和离散通道空间调谐。为了制造高性能的光纤光栅装置,用一种新颖的方法制造了专门设计的光纤,并严格地讨论了折射率变化的机理。关于保偏光纤的偏振依赖性,通过调节萨格纳克环路滤波器中的有效光纤长度来控制透射光谱的绝对波长和相对通道空间。在掺光纤环腔和拉曼光纤环腔配置中都证明了多波长激光。在掺fiber光纤环形激光器的情况下,连续波和脉冲模式输出均考虑用于各种激光器操作和应用。基于广泛级联的拉曼斯托克斯波和非线性现象,开发了几种光纤拉曼激光环形激光器的设计。分析详细的数值模型以优化激光腔。通过光纤梳状滤波器的控制,演示了多激光峰的绝对波长调谐和相对通道空间调谐,并展示了激光器的其他特性。还讨论了可调多波长激光器在光孤子脉冲串发生器,交错式波长选择开关,快速波长扫描激光器,生物医学光学相干断层扫描源,温度和应变传感器以及差动传感器中的应用。吸收激光雷达。

著录项

  • 作者

    Kim, Chang-Seok.;

  • 作者单位

    The Johns Hopkins University.;

  • 授予单位 The Johns Hopkins University.;
  • 学科 Engineering Electronics and Electrical.; Physics Optics.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 196 p.
  • 总页数 196
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;光学;
  • 关键词

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