Gallinet Benjamin, Martin Olivier J F
Nanophotonics and Metrology Laboratory, Swiss Federal Institute of Technology Lausanne (EPFL), Switzerland.
Opt Express. 2011 Oct 24;19(22):22167-75. doi: 10.1364/OE.19.022167.
The relation between the near-field and far-field properties of plasmonic nanostructures that exhibit Fano resonances is investigated in detail. We show that specific features visible in the asymmetric lineshape far-field response of such structures originate from particular polarization distributions in their near-field. In particular we extract the central frequency and width of plasmonic Fano resonances and show that they cannot be directly found from far-field spectra. We also address the effect of the modes coupling onto the frequency, width, asymmetry and modulation depth of the Fano resonance. The methodology described in this article should be useful to analyze and design a broad variety of Fano plasmonic systems with tailored near-field and far-field spectral properties.
详细研究了呈现法诺共振的等离子体纳米结构的近场和远场特性之间的关系。我们表明,此类结构不对称线形远场响应中可见的特定特征源于其近场中的特定极化分布。特别是,我们提取了等离子体法诺共振的中心频率和宽度,并表明无法直接从远场光谱中找到它们。我们还探讨了模式耦合对法诺共振的频率、宽度、不对称性和调制深度的影响。本文所述方法对于分析和设计具有定制近场和远场光谱特性的各种法诺等离子体系统应是有用的。