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Graphene-Based Active Plasmonic Metamaterials

机译:基于石墨烯的活性等离子超材料

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摘要

This thesis presents novel results in the field of plasmonics and optoelectronics application. Plasmonics is the rapidly expanding branch of photonics. It opens up capabilities of electronic and photonic device implementation within the same integrated circuits as well as enhances the limit of detection for chemical and biological-based sensors. The first finding lies in solving the dilemma in search of ultimate plasmonics materials for plasmonics application. It is well known that Cu and Ag are metals that have incredible electric and optic properties. However, they are easily oxidized in contact with air. Both experimental and theoretical findings demonstrate that application of a mono or bilayer graphene protects Cu and Ag from oxidation and degradation of its plasmonic properties. The performance of each metal is evaluated based on the quality factor Q and the minima in amplitude of reflection intensity Rmin of the Surface plasmon-polariton (SPP) curve. The second novelty of this thesis comprises the fabrication of low loss, high efficient broadband, as well as narrowband, graphene-based electro-absorption modulators. The studied graphene-based modulators made use of Fabry-Perot resonator geometries. It has been shown that high-k dielectric hafnium dioxide (HfO2) provides solid state âoe supercapacitorâ effects and allows to observe light modulation from the near-infrared to shorter wavelengths close to the visible spectrum with remarkably low gate voltages (~4 V). The electro-absorption modulators based on Fabry-Perot resonator geometry reached the modulation depth in transmission mode of 28% at a wavelength of 1.1 Amicrom.
机译:本文提出了在等离子体和光电应用领域的新成果。等离子体技术是光子学迅速发展的分支。它在同一集成电路内开放了电子和光子设备实现的功能,并增强了基于化学和生物传感器的检测极限。第一个发现在于解决在寻求用于等离子体应用的最终等离子体材料方面的难题。众所周知,Cu和Ag是具有令人难以置信的电和光学性质的金属。但是,它们与空气接触时很容易被氧化。实验和理论发现均表明,单层或双层石墨烯的应用可保护Cu和Ag免受氧化和等离子体质的降解。根据品质因数Q和表面等离子体激元(SPP)曲线的反射强度Rmin的最小值来评估每种金属的性能。本论文的第二个新颖性包括低损耗,高效宽带以及窄带,基于石墨烯的电吸收调制器的制造。所研究的基于石墨烯的调制器利用了Fabry-Perot谐振器的几何形状。研究表明,高k介电二氧化((HfO2)具有固态“超级电容器”效应,并允许以极低的栅极电压(〜4 V)观察从近红外到更短波长的光调制,接近可见光谱。基于Fabry-Perot谐振器几何形状的电吸收调制器在1.1 Amicrom波长下以28%的传输模式达到调制深度。

著录项

  • 作者

    Aznakayeva, Diana.;

  • 作者单位

    The University of Manchester (United Kingdom).;

  • 授予单位 The University of Manchester (United Kingdom).;
  • 学科 Materials science.
  • 学位 Ph.D.
  • 年度 2018
  • 页码 156 p.
  • 总页数 156
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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