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Design of photonic phased array switches using nano electromechanical systems on silicon-on-insulator integration platform.

机译:在绝缘体上硅集成平台上使用纳米机电系统设计光子相控阵开关。

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摘要

This thesis presents an introduction to the design and simulation of a novel class of integrated photonic phased array switch elements. The main objective is to use nano-electromechanical (NEMS) based phase shifters of cascaded under-etched slot nanowires that are compact in size and require a small amount of power to operate them. The structure of the switch elements is organized such that it brings the phase shifting elements to the exterior sides of the photonic circuits. The transition slot couplers, used to interconnect the phase shifters, are designed to enable biasing one of the silicon beams of each phase shifter from an electrode located at the side of the phase shifter. The other silicon beam of each phase shifter is biased through the rest of the silicon structure of the switch element, which is taken as a ground. Phased array switch elements ranging from 2x2 up to 8x8 multiple-inputs/multiple-outputs (MIMO) are conveniently designed within reasonable footprints native to the current fabrication technologies.;Chapter one presents the general layout of the various designs of the switch elements and demonstrates their novel features. This demonstration will show how waveguide disturbances in the interconnecting network from conventional switch elements can be avoided by adopting an innovative design. Some possible applications for the designed switch elements of different sizes and topologies are indicated throughout the chapter. Chapter two presents the design of the multimode interference (MMI) couplers used in the switch elements as splitters, combiners and waveguide crossovers. Simulation data and design methodologies for the multimode couplers of interest are detailed in this chapter. Chapter three presents the design and analysis of the NEMS-operated phase shifters. Both simulations and numerical analysis are utilized in the design of a 0°-180° capable NEMS-operated phase shifter. Additionally, the response of some of the designed photonic phased array switch elements is demonstrated in this chapter. An executive summary and conclusions sections are also included in the thesis.
机译:本文介绍了一类新型的集成光子相控阵开关元件的设计和仿真。主要目标是使用级联的蚀刻后的缝隙纳米线的基于纳米机电(NEMS)的移相器,该移相器尺寸紧凑且需要少量的功率来操作它们。开关元件的结构被组织成使得其将相移元件带到光子电路的外侧。用于将移相器互连的过渡槽耦合器设计为能够从位于移相器侧面的电极偏置每个移相器的硅束之一。每个移相器的另一个硅束通过开关元件的其余硅结构(被当作地)偏置。相控阵开关元件的范围从2x2到8x8多输入/多输出(MIMO),都可以在当前制造技术固有的合理占位面积内方便地进行设计。第一章介绍了开关元件的各种设计的总体布局并演示了他们的新颖特征。该演示将展示如何通过采用创新设计来避免传统开关元件在互连网络中产生波导干扰。整章将介绍不同大小和拓扑的设计开关元件的一些可能应用。第二章介绍了在开关元件中用作分离器,组合器和波导分频器的多模干扰(MMI)耦合器的设计。本章将详细介绍目标多模耦合器的仿真数据和设计方法。第三章介绍了由NEMS操作的移相器的设计和分析。在具有0°-180°功能的NEMS操作的移相器的设计中同时使用了仿真和数值分析。此外,本章还介绍了一些设计的光子相控阵开关元件的响应。本论文还包括执行摘要和结论部分。

著录项

  • 作者

    Hussein, Ali Abdulsattar.;

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Engineering Electronics and Electrical.;Nanotechnology.
  • 学位 M.A.Sc.
  • 年度 2014
  • 页码 74 p.
  • 总页数 74
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:40

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