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Design and Fabrication of Fractal Photoconductive Terahertz Emitters and Antenna Coupled Tunnel Diode Terahertz Detectors.

机译:分形光电导太赫兹发射器和天线耦合隧道二极管太赫兹探测器的设计与制造。

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摘要

Improved terahertz (THz) photoconductive antennas that are able to both emit higher THz radiation power and detect lower THz radiation signal levels than the traditional THz photoconductive antennas are presented. Also, different classes of fractals are investigated to realize whether the enhanced THz radiation properties of fractal photoconductive THz emitters are universal to all fractals. Finally, the effect of self-similarity of the antenna structure on its performance is studied.;New classes of metal-insulator-metal (MIM) junctions that possess extreme asymmetry and nonlinearity in their current-voltage (I-V) characteristics are investigated. Metal-insulator-insulator-metal (MIIM) diodes incorporating different electron tunneling mechanisms under forward and reverse bias are implemented through the introduction of a cascaded potential barrier. A high I-V nonlinearity, up to 10 times that of a conventional MIM, was obtained for identical metal electrodes. As the next step, the tunneling mechanism is further altered. For this, resonant tunneling transport is incorporated into a metal-insulator-insulator-insulator-metal (MIIIM) diode. This is analogous to a tunnel diode (normal tunneling) with the mechanism of a resonant tunneling device. It is envisioned that high speed THz rectifiers, ultrahigh bandwidth frequency mixers, diodes, and electron tunnel transistors having extraordinary I-V nonlinearity can be realized.;Next, the tunnel diodes are integrated into the antenna-coupled detectors for detecting free space THz radiation. The fabrication process for the MIIM, and MIIM diodes having an integrated antenna has been presented. To accomplish this, the knowledge gained from designing and fabricating optimized THz fractal antennas and highly nonlinear MIIM and MIIIM diodes is utilized for fabricating ultrafast THz detectors.;Finally, the capabilities of THz spectroscopy for characterizing and studying the time dynamics of devices and complicated systems were investigated. To accomplish these tasks, a versatile optical setup for all-THz time resolved pump-probe spectroscopy was designed and tested. This THz setup is used to potentially characterize the temporal and spectral response of the fabricated antenna coupled MIIM and MIIIM diodes. Importantly, utilizing this setup and conventional THz time-domain spectroscopy (THz-TDS), the interaction of THz waves with complex media such as metal-dielectric composites was investigated. This was to expand the utilization of THz imaging from imaging inside dielectric materials into imaging more complex materials largely composed of highly opaque substances. The knowledge gained through a series of experiments was applied in utilizing THz-TDS for imaging dielectric objects embedded inside metallic media. This advancement of THz-TDS was successfully accomplished.
机译:提出了改进的太赫兹(THz)光电导天线,与传统的THz光电导天线相比,它们能够发射更高的THz辐射功率并检测到更低的THz辐射信号。另外,研究了不同种类的分形,以了解分形光电导太赫兹发射器的增强太赫兹辐射特性是否对所有分形都是通用的。最后,研究了天线结构的自相似性对其性能的影响。研究了新型的金属-绝缘体-金属(MIM)结,它们在电流-电压(I-V)特性方面具有极端的不对称性和非线性。通过引入级联势垒来实现在正向和反向偏置下结合了不同电子隧穿机制的金属-绝缘体-绝缘体-金属(MIIM)二极管。对于相同的金属电极,获得了很高的I-V非线性,高达传统MIM的10倍。下一步,将进一步更改隧道机制。为此,将谐振隧道传输合并到金属-绝缘体-绝缘体-绝缘体-金属(MIIIM)二极管中。这类似于具有谐振隧穿装置的机制的隧穿二极管(正常隧穿)。可以设想可以实现具有非凡的I-V非线性的高速THz整流器,超高带宽混频器,二极管和电子隧道晶体管。接着,将隧道二极管集成到天线耦合检测器中,以检测自由空间THz辐射。已经提出了MIIM的制造过程以及具有集成天线的MIIM二极管。为此,利用从设计和制造优化的太赫兹分形天线以及高度非线性的MIIM和MIIIM二极管中获得的知识来制造超快太赫兹检测器。最后,太赫兹光谱用于表征和研究设备和复杂系统的时间动态的能力。被调查了。为了完成这些任务,设计并测试了用于全太赫兹时间分辨泵浦探针光谱的通用光学装置。该THz设置用于潜在地表征所制造的天线耦合的MIIM和MIIIM二极管的时间和频谱响应。重要的是,利用这种设置和常规的THz时域光谱(THz-TDS),研究了THz波与复杂介质(例如金属-电介质复合材料)的相互作用。这是为了将THz成像的应用范围从介电材料内部的成像扩展到成像主要由高度不透明物质组成的更复杂的材料的成像。通过一系列实验获得的知识可用于利用THz-TDS对嵌入金属介质中的电介质物体进行成像。 THz-TDS的这一进展已成功完成。

著录项

  • 作者

    Maraghechi, Pouya.;

  • 作者单位

    University of Alberta (Canada).;

  • 授予单位 University of Alberta (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 219 p.
  • 总页数 219
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 老年病学;
  • 关键词

  • 入库时间 2022-08-17 11:42:50

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