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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Simulation and characterization of the bulk refractive index sensitivity of coupled plasmonic nanostructures with the enhancement factor
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Simulation and characterization of the bulk refractive index sensitivity of coupled plasmonic nanostructures with the enhancement factor

机译:耦合等离子体纳米结构与增强因子的堆积折射率敏感性的模拟与表征

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摘要

The bulk refractive index (RI) sensitivity of coupled plasmonic nanostructures, namely gold and silver nano spheres and nanocubes in two-particle (dimer) arrangements, were simulated with the MNPBEM Matlab toolbox. The size of the nanoparticles (10-90 nm) and their separation distance were the running parameters. The enhancement factor (which characterizes the increased RI sensitivity of multi-particle arrangements compared to single particles) was introduced and used to evaluate the effect of particle coupling on the bulk RI sensitivity of the dimer arrangements. The enhancement factor is an exponential function of (D/D-o), where D is the separation between the particles and D-o is the diameter of the spheres or the edge length of the cubes, and it was found that significant plasmonic coupling effects (e.g. EE 1.5) starts below 0.5-0.3 D/D-o for the investigated dimers, depending on their size. It was also found for the four investigated dimer arrangements (gold/silver nanospheres/nanocubes) that the absolute peak shift and the enhancement factor values are inversely proportional: the dimers which have a larger absolute extinction peak shift (at the same particle separation) have smaller relative enhancement compared to single particles.
机译:用MNPEM MATLAB工具箱模拟耦合等离子体纳米结构,即金和银纳米球体和纳米孔和纳米孔的堆积折射率(RI)敏感性。纳米颗粒的尺寸(10-90nm)及其分离距离是运行参数。引入增强因子(表征与单颗粒相比的多粒子布置的RI敏感性增加),并用于评估颗粒偶联对二聚体布置的体积敏感性的影响。增强因子是(d / do)的指数函数,其中d是颗粒之间的分离,并且Do是球体的直径或立方体的边缘长度,并且发现有显着的等离子体耦合效应(例如ee & 1.5)根据其尺寸开始为调查二聚体的0.5-0.3 d / do。还发现了四种研究的二聚体布置(金/银纳米球/纳米孔),即绝对峰值和增强因子值是成反比的:具有较大绝对消光峰偏移(在相同颗粒分离)的二聚体具有与单颗粒相比,相对增强。

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