Department of Physics, The Chinese University of Hong Kong, Shatin, Hong Kong SAR, China.
ACS Nano. 2011 Aug 23;5(8):6754-63. doi: 10.1021/nn202317b. Epub 2011 Jul 29.
Fano resonances in plasmonic nanostructures, characterized by their asymmetric resonance spectral profile, are currently attracting much interest due to their potential applications in biological sensing, metamaterials, photoswitching, and nonlinear optical devices. In this study, we report on the observation of the Fano resonance in Au nanorods induced by their coupling with the supporting substrate. For Au nanorods having a large size and deposited on a substrate with a large dielectric constant, the strong nanorod-substrate coupling gives rise to a Fano line shape on the far-field scattering spectrum. Electrodynamic calculations reveal that the Fano resonance originates from the interference of a broad octupolar and a narrow quadrupolar plasmon mode of the nanorod. Such an interaction is enabled by the strong image charges induced by substrates with high dielectric constants. Moreover, the Fano resonance is very sensitive to the nanorod-substrate spacing. When the spacing is experimentally increased to be larger than ∼8 nm, the Fano resonance disappears. These results will be important not only for understanding the interference of different plasmon modes in plasmonic systems but also for developing a number of plasmon-based optical and optoelectronic devices.
在等离子体纳米结构中观察到的 Fano 共振,其特征是不对称的共振光谱轮廓,由于它们在生物传感、超材料、光开关和非线性光学器件中的潜在应用而引起了广泛的关注。在这项研究中,我们报告了由金纳米棒与支撑基底的耦合引起的 Fano 共振的观察。对于具有大尺寸的金纳米棒并且沉积在具有大介电常数的基底上,强的纳米棒-基底耦合在远场散射光谱上产生了 Fano 线形状。电动力学计算表明,Fano 共振源于纳米棒的宽八极和窄四极等离子体模式的干涉。这种相互作用是由具有高介电常数的基底引起的强镜像电荷所允许的。此外,Fano 共振对纳米棒-基底间距非常敏感。当实验上增加间距大于约 8nm 时,Fano 共振消失。这些结果不仅对于理解等离子体系统中不同等离子体模式的干涉很重要,而且对于开发许多基于等离子体的光学和光电设备也很重要。