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Novel thin film materials for plasmonic applications

机译:等离子应用的新型薄膜材料

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摘要

The performances of an Inverted Surface Plasmon Resonance (ISPR) biosensor based on novel materials have been studied theoretically and experimentally. The principle of ISPR is based on a maximum of reflectivity at the coupling angle instead of the common used minimum of reflectivity; this solution has not been extensively explored yet. The sensor response has been firstly simulated by the use of a dedicated Matlab routine. Different structures involving different materials have been considered and compared, in order to find the optimized solution. The metals have been deposited on a flat substrate made of optical glass. Different noble metals of optimized thickness have been then deposited on top of it. The substrates have been finally coupled with a prism to test the ISPR response. The metallic layers have been deposited at our lab by Electron Beam Evaporation. The process have been optimized for each material considered. The response of the sensors has been tested at our laboratory on a dedicated optical-bench set-up based on the Kretschmann configuration with angular modulation. The theoretical and experimental data are reported.
机译:从理论上和实验上研究了基于新型材料的反表面等离子体共振生物传感器的性能。 ISPR的原理是基于耦合角处的最大反射率,而不是常用的最小反射率。该解决方案尚未得到广泛探索。首先通过使用专用的Matlab例程来模拟传感器响应。为了找到最佳解决方案,已经考虑并比较了涉及不同材料的不同结构。金属已经沉积在光学玻璃制成的平坦基板上。然后,已在其顶部沉积了厚度最优化的不同贵金属。最终将基板与棱镜耦合以测试ISPR响应。金属层已通过电子束蒸发在我们的实验室沉积。该过程已针对每种考虑的材料进行了优化。传感器的响应已经在我们的实验室中基于基于角调制的克雷奇曼配置的专用光学平台设置进行了测试。报道了理论和实验数据。

著录项

  • 来源
  • 会议地点 San Diego CA(US)
  • 作者单位

    CNR-IFN UOS Padova, Via Trasea 7, Padova, Italy;

    CNR-IFN UOS Padova, Via Trasea 7, Padova, Italy;

    CNR-IFN UOS Padova, Via Trasea 7, Padova, Italy,University of Padova, Department of Information Engineering, via Gradenigo 6B, 35131 Padova, Italy;

    CNR-IFN UOS Padova, Via Trasea 7, Padova, Italy,University of Padova, Department of Information Engineering, via Gradenigo 6B, 35131 Padova, Italy;

    CNR-IFN UOS Padova, Via Trasea 7, Padova, Italy,University of Padova, Department of Information Engineering, via Gradenigo 6B, 35131 Padova, Italy;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Inverted Surface Plasmon Resonance; Palladium;

    机译:反相表面等离子体共振;钯;

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