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Metal-oxide film and photonic structures for integrated device applications.

机译:用于集成设备应用的金属氧化物膜和光子结构。

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摘要

The application of photonic crystal technology on metal-oxide film is a very promising field for future optical telecommunication systems. Band gap and polarization effects in lithium niobate (LiNbO3 ) photonic crystals and bismuth-substituted iron garnets (BiYIG) photonic crystals are investigated in this work reported here. The design and fabrication process are similar for these two materials while the applications are different, involving Bragg filtering in lithium niobate and polarization rotation in nonreciprocal iron garnets.;The research of photonic structures in LiNbO3 is of high interest for integrated device application due to its remarkable electro-optical characteristics. This work investigated the photonic band gap in high quality LiNbO3 single crystalline thin film by ion implantation to realize high efficiency narrow bandwidth filters. LiNbO3 thin film detachment by bonding is also demonstrated for optical device integration.;One-dimensional Bragg BiYIG waveguides in gyrotropic system are found to have multiple stopbands and evince enhancement of polarization rotation efficiency. Previous photon trapping theory cannot explain the phenomena because of the presence of linear birefringence. This work is aimed at investigating the mechanism with the support of experiments. The results we obtained show that selective suppression of Bloch states in gyrotropic bandgaps is the key mechanism for the observed phenomena.;Finally, the research of ferroelectric single crystal PMN-PT with ultra high piezoelectric coefficient as a biosensor is also reported. This work presents an investigation and results on higher sensitivity effects than conventional materials such as quartz and lithium niobate.
机译:光子晶体技术在金属氧化物薄膜上的应用是未来光通信系统的非常有前途的领域。本文报道了铌酸锂(LiNbO3)光子晶体和铋取代铁石榴石(BiYIG)光子晶体中的带隙和极化效应。这两种材料的设计和制造过程相似,而应用却不同,涉及铌酸锂中的布拉格滤波和不可逆铁石榴石中的偏振旋转。出色的电光特性。这项工作通过离子注入研究了高质量LiNbO3单晶薄膜中的光子带隙,以实现高效的窄带宽滤波器。还证明了通过粘结分离LiNbO3薄膜可用于光学器件集成。旋流系统中的一维Bragg BiYIG波导具有多个阻带,可提高偏振旋转效率。由于存在线性双折射,以前的光子俘获理论不能解释这种现象。这项工作旨在在实验的支持下研究该机制。我们得到的结果表明,选择性抑制陀螺带隙中的Bloch状态是观察到现象的关键机制。最后,还报道了具有超高压电系数的铁电单晶PMN-PT作为生物传感器的研究。这项工作提出了一项研究,并得出了比传统材料(例如石英和铌酸锂)更高的感光度效果。

著录项

  • 作者

    Zhou, Ziyou.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Physics Electricity and Magnetism.;Physics Optics.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 215 p.
  • 总页数 215
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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