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Experimental Investigation of the Dielectric Constants of Thin Noble Metallic Films Using a Surface Plasmon Resonance Sensor

机译:表面等离子体共振传感器对贵金属薄膜介电常数的实验研究

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摘要

Gold and silver have an extremely low refractive index value of about 0.04 in the visible to near infrared (NIR) regions, and this induces a relative error of about 50% in refractive index measurements. This can lead to a large uncertainty in the imaginary part of the dielectric constants. A large difference exists between the experimental results and the classic models. The surface plasmon resonance (SPR) sensors, which use tens of nanometer thick noble metal film as the sensing layer, show ultra-high sensitivity (reaching 10 RIU) in this spectral range. As the spectral sensitivity and amplitude of SPR curves depend on the thickness and the dielectric constant of the sensing layer, we obtained high precision optical constants of the noble metal film using a multi-wavelength angle-modulated SPR sensing technology. The dielectric constant inferred from the parameters of the SPR curves, rather than from the refractive index and absorption ratio of noble metals, introduced a relative error within 10% of the resonance angle measurement. The measurement results demonstrate that the dielectric constants of gold and silver nano-films are more consistent with the widely used experimental results than with the classical theoretical model and always fall in the upper half of the imaginary part of the uncertainty range in the spectra of 500–900 nm.
机译:金和银在可见光到近红外(NIR)区域的折射率值非常低,约为0.04,这会在折射率测量中引起约50%的相对误差。这会导致介电常数的虚部很大的不确定性。实验结果与经典模型之间存在很大差异。使用数十纳米厚的贵金属膜作为传感层的表面等离子体共振(SPR)传感器在此光谱范围内显示出超高灵敏度(达到10 RIU)。由于SPR曲线的光谱灵敏度和幅度取决于传感层的厚度和介电常数,因此我们使用多波长角度调制SPR传感技术获得了贵金属膜的高精度光学常数。从SPR曲线的参数而不是从贵金属的折射率和吸收率推断出的介电常数在共振角测量值的10%以内引入了相对误差。测量结果表明,金和银纳米薄膜的介电常数与广泛使用的实验结果相比,与经典理论模型更一致,并且始终落在500光谱的不确定性范围的虚部的上半部。 –900纳米

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