首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Metallic nanoparticles on waveguide structures: Effects on waveguide mode properties and the promise of sensing applications
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Metallic nanoparticles on waveguide structures: Effects on waveguide mode properties and the promise of sensing applications

机译:波导结构上的金属纳米粒子:对波导模式特性的影响以及传感应用的前景

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摘要

We present a treatment of metallic nanoparticles on waveguide (WG) structures, treating the scenario where the spacing between the metallic nanoparticles is much less than the wavelength of light. We derive an effective medium treatment of the layer containing the nanoparticles, introducing transfer matrices for the layer. The coefficients of the transfer matrices take into account the interaction of the nanoparticles with each other, as well as local field corrections to the interaction of the nanoparticles with the material beneath them. Used with the WG mode pole expansions for the Fresnel coefficients of the WG structure, this allows for simple expressions for the shift and width of the WG mode resonance wave vector induced by the nanoparticles. As an example, we work out the simple case where the nanoparticles are treated as point dipoles, and use it to investigate the potential of this kind of structure for sensing applications.
机译:我们介绍了一种在波导(WG)结构上处理金属纳米颗粒的方法,用于处理金属纳米颗粒之间的间距远小于光波长的情况。我们推导了包含纳米颗粒的层的有效介质处理,并为该层引入了转移矩阵。转移矩阵的系数考虑了纳米粒子彼此之间的相互作用,以及对纳米粒子与其下方材料的相互作用的局部场校正。与用于WG结构的菲涅耳系数的WG模式极点扩展一起使用,这允许简单表示由纳米粒子引起的WG模式共振波矢量的位移和宽度。例如,我们计算出将纳米粒子视为点偶极子的简单情况,并用它来研究这种结构在传感应用中的潜力。

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