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Development and Characterization of an Optically Tunable Dielectric Material.

机译:光可调介电材料的开发和表征。

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摘要

The ever increasing use of wireless devices has caused a need for devices that can operate over a range of frequencies and conditions. This can be accomplished by using tunable circuits that utilize a tunable dielectric material. This work proposes a new optically tunable dielectric material that consists of a transparent polymer mixed with particles of cadmium sulfide, which are photoconductive.;A potential method to simulate the properties of a heterogeneous material is presented. The validity of the simulations were confirmed by comparing them to Bruggeman's effective medium theory and percolation theory.;The characterization apparatus developed in this work was used to measure the complex permittivity of the polymer-cadmium sulfide films. The shift in dielectric constant of the films with illumination was at least 9%. The dielectric loss tangent of the materials also increased by up to 0.085, from 0.063 to 0.148.;The optically tunable dielectric material shows a shift in dielectric constant that may make it comparable with ferroelectric materials. The opportunity exists to increase the change in the dielectric constant and decrease the change in the dielectric loss tangent with further optimization.;A resonant characterization apparatus was developed to measure the microwave properties of optically sensitive films deposited on glass cover slips. The apparatus was a modification of the characterization apparatus known as the split-post dielectric resonator.
机译:无线设备的日益增长的使用引起了对可以在一定频率和条件范围内运行的设备的需求。这可以通过使用利用可调介电材料的可调电路来实现。这项工作提出了一种新型的光学可调介电材料,该材料由透明聚合物与光导的硫化镉颗粒混合而成。提出了一种模拟异质材料性能的潜在方法。通过与布鲁格曼的有效介质理论和渗流理论进行比较,验证了模拟的有效性。本研究开发的表征装置用于测量聚合物-硫化镉薄膜的复介电常数。光照下薄膜介电常数的变化至少为9%。材料的介电损耗角正切也增加了0.085,从0.063增至0.148。光可调介电材料显示出介电常数的变化,这使其可与铁电材料相比。存在通过进一步优化来增加介电常数的变化并减小介电损耗正切的变化的机会。;开发了共振表征装置,以测量沉积在玻璃盖玻片上的光学敏感膜的微波特性。该设备是称为分流柱介电谐振器的表征设备的改进。

著录项

  • 作者

    Jess, Nathan.;

  • 作者单位

    Carleton University (Canada).;

  • 授予单位 Carleton University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.A.Sc.
  • 年度 2010
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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