首页> 外文学位 >Nonlinear effects in magnetic garnet films and nonreciprocal optical Bloch oscillations in waveguide arrays.
【24h】

Nonlinear effects in magnetic garnet films and nonreciprocal optical Bloch oscillations in waveguide arrays.

机译:磁性石榴石薄膜中的非线性效应和波导阵列中不可逆的光Bloch振荡。

获取原文
获取原文并翻译 | 示例

摘要

This dissertation presents detailed experimental and theoretical investigations of nonlinear and nonreciprocal effects in magnetic garnet films. The dissertation thus comprises two major sections. The first section concentrates on the study of a new class of nonlinear magneto-optic thin film materials possessing strong higher order magnetic susceptibility for nonlinear optical applications. The focus was on enlarging the nonlinear performance of ferrite garnet films by strain generation and compositional gradients in the sputter-deposition growth of these films. Under this project several bismuth-substituted yttrium iron garnet (Bi,Y)3(Fe,Ga)5O12 (acronym as Bi:YIG) films have been sputter-deposited over gadolinium gallium garnet (Gd 3Ga5O12) substrates and characterized for their nonlinear optical response. One of the important findings of this work is that lattice mismatch strain drives the second harmonic (SH) signal in the Bi:YIG films, in agreement with theoretical predictions; whereas micro-strain was found not to correlate significantly with SH signal at the micro-strain levels present in these films. This study also elaborates on the role of the film's constitutive elements and their concentration gradients in nonlinear response of the films. Ultrahigh sensitivity delivered by second harmonic generation provides a new exciting tool for studying magnetized surfaces and buried interfaces, making this work important from both a fundamental and application point of view.;The second part of the dissertation addresses an important technological need; namely the development of an on-chip optical isolator for use in photonic integrated circuits. It is based on two related novel effects, nonreciprocal and unidirectional optical Bloch oscillations (BOs), recently proposed and developed by Professor Miguel Levy and myself. This dissertation work has established a comprehensive theoretical background for the implementation of these effects in magneto-optic waveguide arrays. The model systems we developed consist of photonic lattices in the form of one-dimensional waveguide arrays where an optical force is introduced into the array through geometrical design turning the beam sideways. Laterally displaced photons are periodically returned to a central guide by photonic crystal action. The effect leads to a novel oscillatory optical phenomenon that can be magnetically controlled and rendered unidirectional. An on-chip optical isolator was designed based on the unidirectionality of the magneto-opticBloch oscillatory motion. The proposed device delivers an isolation ratio as high as 36 dB that remains above 30 dB in a 0.7 nm wavelength bandwidth, at the telecommunication wavelength 1.55 μm. Slight modifications in isolator design allow one to achieve an even more impressive isolation ratio ~ 55 dB, but at the expense of smaller bandwidth. Moreover, the device allows multifunctionality, such as optical switching with a simultaneous isolation function, well suited for photonic integrated circuits.
机译:本文对磁性石榴石薄膜的非线性和非互作用进行了详细的实验和理论研究。因此,论文包括两个主要部分。第一部分着重研究对非线性光学应用具有强的高阶磁化率的新型非线性磁光薄膜材料的研究。重点是通过在这些膜的溅射沉积生长过程中产生应变和成分梯度来扩大铁氧体石榴石膜的非线性性能。在该项目下,已在several镓石榴石(Gd 3Ga5O12)衬底上溅射沉积了几种铋取代的钇铁石榴石(Bi,Y)3(Fe,Ga)5O12(缩写为Bi:YIG)薄膜,并对其非线性光学特性进行了表征。响应。这项工作的重要发现之一是,晶格失配应变驱动Bi:YIG薄膜中的二次谐波(SH)信号,这与理论预测相符。然而,在这些膜中存在的微应变水平下,发现微应变与SH信号没有显着相关。这项研究还阐述了薄膜的组成元素及其浓度梯度在薄膜非线性响应中的作用。二次谐波产生的超高灵敏度为研究磁化表面和掩埋界面提供了一种新的令人兴奋的工具,从基础和应用的角度来看,这项工作都很重要。即开发用于光子集成电路的片上光隔离器。它基于两个相关的新颖效应,即不可逆和单向光学Bloch振荡(BO),由Miguel Levy教授和我本人最近提出并开发。论文的工作为在磁光波导阵列中实现这些效应建立了全面的理论背景。我们开发的模型系统由一维波导阵列形式的光子晶格组成,其中通过几何设计使光束向侧面倾斜,从而将光力引入阵列。横向移动的光子通过光子晶体的作用周期性地返回中央波导。这种效应导致了一种新颖的振荡光学现象,该现象可以被磁控制并使其单向。基于磁光布洛赫振荡运动的单向性,设计了一个片上光隔离器。拟议的器件在电信波长1.55μm处提供了高达36 dB的隔离率,在0.7 nm的波长带宽中仍保持在30 dB以上。隔离器设计的一些细微改动使隔离度达到了甚至更高的〜55 dB,但代价是带宽较小。此外,该设备还具有多功能性,例如具有同时隔离功能的光学开关,非常适合光子集成电路。

著录项

  • 作者

    Kumar, Pradeep.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 166 p.
  • 总页数 166
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号