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Optical sensors based on spectroscopy of localized surface plasmons on metallic nanoparticles: Sensitivity considerations

机译:基于光谱的金属纳米粒子上的局部表面等离子体激元的光学传感器:灵敏度考虑

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摘要

Surface plasmon resonance (SPR) sensors use two types of surface plasmons: (i) propagating along a metal-dielectric interface and (ii) localized on metallic nano-objects. This article presents theoretical analysis of sensitivity of SPR sensors based on spectroscopy of localized surface plasmons on metallic nanoparticles. Analytical formulas inter-relating bulk and surface refractive index sensitivity with main design parameters are derived using the electrostatic approximation. The effect of particle diameter is accounted for by means of Mie theory. Figures of merit for SPR sensors using localized and propagating surface plasmons are calculated and compared. Although sensors based on spectroscopy of localized surface plasmons on gold spherical particles show promise for detection of processes occurring in the close proximity of the particle surface, their performance is still inferior to that of SPR sensors based on spectroscopy of propagating surface plasmons.
机译:表面等离子体激元共振(SPR)传感器使用两种类型的表面等离子体激元:(i)沿着金属-电介质界面传播,以及(ii)定位在金属纳米物体上。本文基于金属纳米粒子上的局部表面等离子体激元光谱,对SPR传感器的灵敏度进行了理论分析。使用静电近似推导了将体积和表面折射率灵敏度与主要设计参数相关联的分析公式。粒径的影响通过米氏理论来解释。计算并比较了使用局部和传播表面等离子体激元的SPR传感器的品质因数。尽管基于金球形颗粒上局部表面等离子体激元光谱的传感器显示出有望检测在颗粒表面附近发生的过程的希望,但它们的性能仍然不如基于传播表面等离子体激元光谱的SPR传感器。

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