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Novel Devices for Terahertz Wave Imaging, Wave-guiding and Sensing.

机译:用于太赫兹波成像,导波和传感的新型设备。

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摘要

Several novel optical devices, which were designed to manipulate terahertz waves for broadband near-field imaging, wave-guiding (invisible space), and sensing (resonator), are presented in this thesis. We developed the original working concepts of each device, and demonstrated the prototype experimentally in our lab. The working concepts of physics were investigated in experiment, in simulation and in theoretical analysis.;We exploited a tapered parallel-plate waveguide (PPWG) as a novel probe for broadband near-field imaging. This imaging probe consists of two metal plates with the plate spacing gradually tapered from one end to the other. We proved that the space tapering enables this probe to propagate the broadband THz waves efficiently (with low-loss, no cut-off and nearly no dispersion) from the input end of large spacing into the narrow end of sub-wavelength spacing. Working in a reflection mode, this imaging probe is proved to be able to differentiate the dielectric features as well as topographic information on the sample. Combined with the methodology of filtered back projection, we reconstructed a two-dimensional image of a gold pattern on a GaAs chip by using this tapered PPWG probe. The smallest feature of ∼100 microm is resolved by using the waves with average wavelength of 1.5 mm.;We studied the phenomenon of surface plasmon-polariton in THz range on the platform of a parallel-plate waveguide (PPWG). In this thesis, we show the characterization of the waveguide mode of a finite-width parallel plate waveguide by using an improved scattering-probe technique. An abrupt waveguide mode transition was observed at a very narrow frequency range. We demonstrated that this transition frequency is determined by the material properties of the waveguide, the frequencies of the electromagnetic waves as well as the geometry of the waveguide. This result provides a good guidance for the waveguide design for THz transmission.;We also exploited the capability of using the spoof surface plasmon to enhance the reflectivity of an interface between free space and a PPWG. We demonstrated that the reflection coefficient of this interface can be enhanced up to ∼100 % at a designed frequency, by cutting a designed pattern of periodic rectangular groove on the output facet of the PPWG. A lateral shift and a phase shift of the reflected beam is observed in the experiment, which is a strong reminiscent of Goos-Hanchen shift. We carried out the experimental, simulation and theoretical characterizations of the lateral and phase shift. As an application, we designed and demonstrated a prototype of a band-pass THz resonator.;We introduced the concept of a waveguide-based two-dimensional inhomogeneous artificial dielectric into THz range. This artificial dielectric is the space between the two metal plates of a PPWG working in TE1 mode. We designed a THz mirage device (or an invisible space device) by using ray-tracing and full-wave simulations, which contributed to the first experimental demonstration of such a device. A metal coin of size several times larger than the working wavelength can be hidden in the device without casting any shadow. This work is in collaboration with Dr. Rajind Mendis and the author of this thesis contributed to the design and characterization of the device in simulations.
机译:本文提出了几种新颖的光学器件,旨在对太赫兹波进行宽带近场成像,波导(不可见空间)和传感(谐振器)的操纵。我们开发了每种设备的原始工作概念,并在我们的实验室中通过实验演示了原型。在实验,仿真和理论分析中研究了物理学的工作原理。我们开发了锥形平行平板波导(PPWG)作为宽带近场成像的新型探针。该成像探头由两个金属板组成,板的间距从一端到另一端逐渐变细。我们证明了空间渐缩使该探头能够有效地将宽带太赫兹波从大间隔的输入端传播到亚波长间隔的窄端(低损耗,无截止且几乎没有色散)。该成像探头以反射模式工作,被证明能够区分样品的介电特征和形貌信息。结合滤波反投影的方法,我们使用此锥形PPWG探针在GaAs芯片上重建了金图案的二维图像。通过使用平均波长为1.5 mm的波来解决约100微米的最小特征。;我们在平行板波导(PPWG)的平台上研究了THz范围内的表面等离子体激元极化现象。在本文中,我们使用改进的散射探针技术展示了有限宽度平行板波导的波导模式的特性。在非常窄的频率范围内观察到突然的波导模式转变。我们证明了这种转变频率是由波导的材料特性,电磁波的频率以及波导的几何形状确定的。该结果为太赫兹传输的波导设计提供了很好的指导。;我们还利用了欺骗表面等离子体激元来增强自由空间和PPWG之间的界面的反射率的能力。我们证明,通过在PPWG的输出面上切出周期性矩形凹槽的设计图案,可以在设计频率下将该界面的反射系数提高到约100%。在实验中观察到反射光束的横向偏移和相移,这很容易让人想起Goos-Hanchen偏移。我们进行了横向和相移的实验,仿真和理论表征。作为应用,我们设计并演示了带通太赫兹谐振器的原型。我们将基于波导的二维非均匀人工电介质的概念引入了太赫兹范围。这种人造电介质是在TE1模式下工作的PPWG的两个金属板之间的空间。我们通过使用射线跟踪和全波模拟设计了太赫兹(THz)幻影设备(或不可见空间设备),这为此类设备的首次实验演示做出了贡献。尺寸大于工作波长几倍的金属硬币可以隐藏在设备中,而不会产生任何阴影。这项工作是与拉金德·门迪斯(Rajind Mendis)博士合作的,本论文的作者为仿真中的设备的设计和表征做出了贡献。

著录项

  • 作者

    Liu, Jingbo.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Physics Optics.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 126 p.
  • 总页数 126
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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