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Design, fabrication and analysis of integrated optical waveguide devices (Laser micromachining, Planar lightguide circuits).

机译:集成光波导设备(激光微加工,平面光导电路)的设计,制造和分析。

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摘要

Throughout the present dissertation, the main effort has been to develop the set of design rules for optical integrated circuits (OIC). At the present time, when planar optical integrated circuits seem to be the leading technology, and industry is heading towards much higher levels of integration, such design rules become necessary. It is known that analysis of light propagation in rectangular waveguides can not be carried out exactly. Various approximations become necessary, and their validity is discussed in this text. Various methods are used in the text for calculating the same problems, and results are compared. A few new concepts have been suggested to avoid approximations used elsewhere.; The second part of this dissertation is directed to the development of a new technique for the fabrication of optical integrated circuits inside optical glass. This technique is based on the use of ultrafast laser pulses to alter the properties of glasses. Using this method we demonstrated the possibility of changing the refractive index of various passive and active optical glasses as well as ablating the material on the surface in a controlled fashion. A number of optical waveguide devices (e.g. waveguides, directional couplers, diffraction gratings, fiber Bragg gratings, V-grooves in dual-clad optical fibers, optical waveguide amplifiers) were fabricated and tested. Testing included measurements of loss/throughput, near-field mode profiles, efficiency and thermal stability. All of the experimental setup and test results are reported in the dissertation. We also demonstrated the possibility of using this technique to fabricate future bio-optical devices that will incorporate an OIC and a microfluidic circuit on a single substrate.; Our results are expected to serve as a guide for the design and fabrication of a new generation of integrated optical and bio-optical devices.
机译:在整个本文中,主要工作是开发用于光学集成电路(OIC)的设计规则集。当前,当平面光学集成电路似乎是领先的技术,并且工业正朝着更高的集成水平发展时,这种设计规则变得必要。众所周知,不能精确地进行矩形波导中光传播的分析。各种近似都变得必​​要,本文讨论其有效性。文中使用各种方法来计算相同的问题,并对结果进行比较。已经提出了一些新概念,以避免在其他地方使用近似值。本文的第二部分是针对在光学玻璃内部制造光学集成电路的新技术的发展。该技术基于使用超快激光脉冲来改变眼镜的特性。使用这种方法,我们证明了改变各种被动和主动光学眼镜的折射率以及以受控方式烧蚀表面上的材料的可能性。制作并测试了许多光波导器件(例如,波导,定向耦合器,衍射光栅,光纤布拉格光栅,双包层光纤中的V形槽,光波导放大器)。测试包括损耗/吞吐量,近场模式分布,效率和热稳定性的测量。所有的实验设置和测试结果都在论文中进行了报道。我们还证明了使用这种技术来制造未来的生物光学器件的可能性,该生物光学器件将在单个基板上集成OIC和微流体电路。我们的结果有望作为设计和制造新一代集成光学和生物光学设备的指南。

著录项

  • 作者

    Sikorski, Yuri.;

  • 作者单位

    The University of Toledo.;

  • 授予单位 The University of Toledo.;
  • 学科 Physics Optics.; Engineering Electronics and Electrical.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 109 p.
  • 总页数 109
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;无线电电子学、电信技术;工程材料学;
  • 关键词

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