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首页> 外文期刊>ACS nano >High-performance nanosensors based on plasmonic Fano-like interference: Probing refractive index with individual nanorice and nanobelts
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High-performance nanosensors based on plasmonic Fano-like interference: Probing refractive index with individual nanorice and nanobelts

机译:基于等离子Fano类干扰的高性能纳米传感器:利用单个纳米颗粒和纳米带探测折射率

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摘要

We propose two different configurations for which the Fano-like interference of longitudinal plasmon resonances occurring at individual metallic nanoparticles can be easily employed in refractive index sensing: a colloidal suspension of nanospheroids (nanorice) and a single nanowire with rectangular cross section (nanobelt) on top of a dielectric substrate. We numerically study the performance of the two in terms of their figures of merit, which are calculated under realistic conditions. For the case of nanorice, we explicitly incorporate the effect of size dispersity into the simulations. Our obtained results show that the application of the proposed configurations seems to be not only feasible but also very promising.
机译:我们提出了两种不同的配置,可以很容易地在折射率感应中采用在单个金属纳米颗粒上发生的纵向等离振子共振的Fano样干扰:纳米球体的胶体悬浮液(nanorice)和一条矩形截面(nanobelt)的纳米线。电介质基板的顶部。我们根据它们的品质因数对它们的性能进行数值研究,这些品质因数是在现实条件下计算得出的。对于纳米米,我们将尺寸分散性的影响明确纳入了模拟中。我们获得的结果表明,提出的配置的应用似乎不仅可行,而且非常有前途。

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