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Measurement of the air gap width between double-deck metal layers based on surface plasmon resonance

机译:基于表面等离子体激元共振的双层金属层之间气隙宽度的测量

摘要

[[abstract]]In this article, we verify that the traditional Kretschmann-Raether configuration of surface plasmon resonance (SPR) could be used to measure the air gap width between a gold-plated prism and another gold-plated glass slide. Due to the presence of double-deck metal layers, the Fabry-Perot resonance and surface plasmon tunnel-coupled effects could occur, which would cause the SPR angle to begin to shift at a larger air gap width of about 700 nm as compared to the case of single metal layer with an air gap width of about 350 nm. The simulated results reveal that the SPR angle begins monotonically to shift initially from 44.5 degrees to 46 degrees when the air gap width between double-deck metal layers decreases from 700 to 500 nm. The smallest air gap width is measured to be 539 nm, in which the SPR angle is 45.5 degrees, by fitting the simulated curves to the experimental results.
机译:[[摘要]]在本文中,我们验证了表面等离子共振(SPR)的传统Kretschmann-Raether配置可用于测量镀金棱镜和另一个镀金载玻片之间的气隙宽度。由于存在双层金属层,可能会发生Fabry-Perot共振和表面等离子体激元隧道耦合效应,这将导致SPR角与大约700 nm的较大气隙宽度开始偏移。单金属层的情况是气隙宽度为约350nm。仿真结果表明,当双层金属层之间的气隙宽度从700 nm减小到500 nm时,SPR角开始单调开始从44.5度变为46度。通过将模拟曲线拟合到实验结果,测得的最小气隙宽度为539 nm,其中SPR角为45.5度。

著录项

  • 作者

    Wu PT;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 [[iso]]en
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