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Exploration of grating-based surface plasmon resonance systems for wave vector matching to enhance plasmon modes and preliminary surface plasmon-enhanced fluorescence interrogation.

机译:探索基于光栅的表面等离子体激元共振系统,以进行波矢量匹配,以增强等离子体激元模式和初步的表面等离子体激元增强的荧光询问。

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摘要

Surface plasmon resonance refers to the collective oscillation of conductance band electrons in a metal. The most common experimental method to excite surface plasmon resonance is with light through a coupling mode (prism, grating, waveguide, etc). The work presented in this thesis uses experimental observations of surface plasmon resonance, bolstered with theoretical, analytical and computational solutions, in order to explain and show applications of the phenomena observed.;Chapter 1 introduces surface plasmon resonance by explicating historical interest in the phenomena. Theoretical and experimental results opened the door for surface plasmon resonance to be used as a refractive index sensor (allowing for diagnostics and kinetics studies). Surface plasmon resonance is also associated with a highly localized electric field, which can be used to enhance many spectroscopic techniques like infrared absorption, fluorescence, Raman spectroscopy, and surface chemistry reactions. This chapter will close by looking into the specific information on studies that will be found in subsequent chapters.;Chapter 2 reveals information behind a study conducted to increase the localization of light in a surface plasmon resonance system through matching the surface plasmon resonance wave vectors across a thin metal film. As discussed in depth, this matching occurs by shifting the front side optical properties to match the back side (across the metal film), through the use of a high refractive index layer. Finally, this system is probed with refractive index sensing of the new (matched-high refractive index film present) sensor, and native (unmatched- no high refractive index film) sensor.;Chapter 3 introduces a study laying ground work in future experiments in our lab pertaining to enhancing photoluminescence with surface plasmon resonance. Preliminary data shows enhanced fluorescence of rhodamine B in poly(methyl methacrylate) thin films due to the films' proximity to metal gratings. Implications of the preliminary findings are explicated and a full study is proposed.
机译:表面等离子体共振是指金属中电导带电子的集体振荡。激发表面等离子体激元共振的最常见实验方法是通过耦合模式(棱镜,光栅,波导等)使光通过。本文的工作是利用表面等离振子共振的实验观察,并结合理论,分析和计算解决方案,以解释和显示所观察到的现象的应用。第一章通过阐述历史现象来介绍表面等离振子共振。理论和实验结果为表面等离子体激元共振用作折射率传感器打开了大门(允许进行诊断和动力学研究)。表面等离子体激元共振还与高度局部化的电场有关,该电场可用于增强许多光谱技术,例如红外吸收,荧光,拉曼光谱和表面化学反应。本章将通过研究在后续各章中找到的有关研究的特定信息来结束。;第2章揭示了一项研究的信息,该研究通过使表面等离振子共振波矢量相互匹配来增加表面等离振子共振系统中光的定位。薄的金属膜。如深入讨论的那样,通过使用高折射率层使正面光学特性偏移以匹配背面(横跨金属膜)来发生这种匹配。最后,该系统将通过新的(存在匹配的高折射率膜)传感器和原生(未匹配的无高折射率膜)传感器的折射率传感进行探测。;第3章介绍了一项研究,为将来的实验奠定了基础我们的实验室涉及通过表面等离子体共振增强光致发光。初步数据显示,由于聚甲基丙烯酸甲酯薄膜中的罗丹明B靠近金属光栅,因此荧光增强。初步发现的含义被阐明,并提出了一项完整的研究。

著录项

  • 作者

    Johnson, Michael B.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Chemical engineering.;Optics.;Physics.
  • 学位 M.S.
  • 年度 2016
  • 页码 77 p.
  • 总页数 77
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:50:31

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