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通过方位角控制增强光栅耦合表面等离子体共振的灵敏度

Sensitivity enhancement in grating coupled surface plasmon resonance by azimuthal control.

作者信息

Romanato F, Lee K H, Kang H K, Ruffato G, Wong C C

机构信息

Dep of Physics G Galilei, Padua Univ, 35131 Padua, Italy.

出版信息

Opt Express. 2009 Jul 6;17(14):12145-54. doi: 10.1364/oe.17.012145.

Abstract

We present a method for improving the sensing capability of grating coupled surface plasmon resonance (GCSPR) sensors. The grating is rotated azimuthally (phi) until the excitation of double surface plasmon polaritions (SPPs) by a single wavelength is possible. Close to this condition, further tuning of the incident wavelength will merge the double SPPs into a multi-SPP resonance which is angularly broad but spectrally sharp. This is the condition where the momentum vector of the propagating SPP is perpendicular to the incident light momentum. We demonstrate this sensitivity enhancement on a Au grating surface using a dodecanethiol (C12) self-assembled monolayer (SAM). Using this method, a shift in resonance angle as large as 3 degrees can be observed. The simulated sensitivity of this method shows that a sensitivity up to 800 degrees /RIU is achievable, which is one order of magnitude greater than that in a conventional fixed grating (phi = 0 degrees ) as well as the prism-coupled Kretschmann configuration.

摘要

我们提出了一种提高光栅耦合表面等离子体共振(GCSPR)传感器传感能力的方法。将光栅绕方位角(φ)旋转,直到单个波长能够激发双表面等离子体极化激元(SPP)。接近这种条件时,进一步调整入射波长会使双SPP合并为多SPP共振,该共振在角度上较宽但在光谱上较尖锐。这是传播的SPP的动量矢量与入射光动量垂直的条件。我们使用十二烷硫醇(C12)自组装单层(SAM)在金光栅表面证明了这种灵敏度增强。使用这种方法,可以观察到共振角高达3度的偏移。该方法的模拟灵敏度表明,灵敏度可达800度/RIU,比传统固定光栅(φ = 0度)以及棱镜耦合的Kretschmann配置高一个数量级。

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