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Bragg-grating-based rare-earth-ion-doped channel waveguide lasers and their applications

机译:基于布拉格光栅的稀土离子掺杂沟道波导激光器及其应用

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摘要

The research presented in this thesis concerns the investigation and development of Bragggrating-based integrated cavities for the rare-earth-ion-doped Al2O3 (aluminium oxide) waveguide platform, both from a theoretical and an experimental point of view, with the primary purpose of realizing narrow-linewidth, monolithic channel waveguide lasers.udTo determine the optimum design parameters and for understanding the operationudprinciples of Bragg-grating-based rare-earth-ion-doped channel waveguide lasers, a mathematical model of such a laser is implemented. The mathematical description consists of laser rate equations, which describe the population dynamics of rare-earth ions, as well as coupled mode equations, which describe the operation of waveguide Bragg gratings.udMaking use of reactive co-sputtering from high purity metallic targets, rare-earth-iondoped Al2O3 waveguide layers are deposited onto thermally-oxidized silicon substrates, after which channel waveguides are etched using a chlorine-based reactive ion etching process. A high-resolution lithography technique, known as laser interference lithography is used to define the Bragg-grating structures, which are finally etched via reactive ion etching into a SiO2 cladding layer on top of the waveguides.udOptimized waveguide and grating geometries allowed various rare-earth-ion-doped integrated channel waveguide lasers to be demonstrated. These include an erbium-doped Al2O3 distributed feedback channel waveguide laser having a linewidth of 1.7 kHz, as well as highly efficient ytterbium-doped Al2O3 distributed feedback and distributed Bragg reflector lasers with slope efficiencies as high as 67%.udThe use of two local phase shifts in a distributed-feedback structure enables the demonstration of a dual-wavelength distributed feedback channel waveguide laser. This device is used for the photonic generation of a microwave signal via the heterodyne detection of the two optical waves emitted by the laser. By varying the values of the respective phase shifts, various laser cavities producing microwave signals with frequencies ranging between 12.43 GHz and 23.2 GHz are demonstrated. The stability performance and narrow-linewidth of these free-running lasers show the great potential of using rare-earthion-doped monolithic waveguide lasers for the photonic generation of stable microwaveudsignals in novel applications such as phased array antennas.udAnother innovative application of the photonic generation of stable microwave signals is the demonstration of an integrated intra-laser-cavity micro-particle optical sensor based on a dual-wavelength distributed-feedback channel waveguide laser. Real-time detection and accurate size measurement of single micro-particles with diameters ranging between 1 µm and 20 µm is achieved. This represents the typical size of many fungal and bacterial pathogens as well as a large variety of human cells. A limit of detection of ~ 500 nm is deduced. The sensing principle relies on measuring changes in the frequency differenceudbetween the two longitudinal laser modes as the evanescent field of the dual-wavelength laser interacts with micro-sized particles on the surface of the waveguide.
机译:本文提出的研究涉及从理论和实验的角度研究掺稀土离子的Al2O3(氧化铝)波导平台Braggrating基集成腔的研究和开发,其主要目的是:为了确定最佳的设计参数并了解基于布拉格光栅的稀土离子掺杂的沟道波导激光器的工作原理,实现了这种激光器的数学模型。数学描述由描述稀土离子的种群动力学的激光速率方程以及描述波导布拉格光栅的操作的耦合模方程组成。 ud使用高纯金属靶材的反应性共溅射,将稀土离子掺杂的Al2O3波导层沉积到热氧化的硅基板上,然后使用基于氯的反应离子刻蚀工艺对通道波导进行刻蚀。高分辨率光刻技术(称为激光干涉光刻)用于定义布拉格光栅结构,最后通过反应离子刻蚀将其蚀刻到波导顶部的SiO2包层中。掺杂稀土离子的集成通道波导激光器。这些包括线宽为1.7 kHz的掺ped Al2O3分布反馈通道波导激光器,以及斜率效率高达67%的高效掺do Al2O3分布反馈和分布式布拉格反射镜激光器。 ud使用两个局部分布式反馈结构中的相移可演示双波长分布式反馈通道波导激光器。该设备用于通过外差检测激光器发出的两个光波来产生微波信号。通过改变各个相移的值,展示了产生频率范围在12.43 GHz和23.2 GHz之间的微波信号的各种激光腔。这些自由运行的激光器的稳定性能和窄线宽表明在相控阵天线等新型应用中,使用掺稀土掺杂的单片波导激光器来产生稳定的微波/信号的光子学具有巨大潜力。稳定微波信号的光子产生是基于双波长分布式反馈通道波导激光器的集成激光腔内微粒光学传感器的演示。实现了直径在1 µm至20 µm之间的单个微粒的实时检测和精确的尺寸测量。这代表了许多真菌和细菌病原体以及各种人类细胞的典型大小。推断出约500 nm的检测极限。传感原理依赖于测量两个纵向激光​​模式之间的频率差变化,因为双波长激光的the逝场与波导表面上的微尺寸粒子相互作用。

著录项

  • 作者

    Bernhardi Edward Harold;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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