Zhang Jingjing, Zayats Anatoly
Department of Physics, King’s College London, Strand, London WC2R 2LS, UK.
Opt Express. 2013 Apr 8;21(7):8426-36. doi: 10.1364/OE.21.008426.
Multiple plasmonic Fano resonances are generally considered to require complex nanostructures, such as multilayer structure, to provide several dark modes that can couple with the bright mode. In this paper, we show the existence of multiple Fano resonances in single layer core-shell nanostructures where the multiple dark modes appear due to the geometrical symmetry breaking induced by axial offset of the core. Both dielectric-core-metal-shell (DCMS) and metal-core-dielectric-shell (MCDS) configurations have been studied. Compared to the MCDS structure, the DCMS configuration provides higher modulation depth. Analytical studies based on transformation optics and numerical simulations have been performed to investigate the role of geometrical and material parameters on the optical properties of the proposed nanostructures. Refractive index sensing with higher-order Fano resonances has also been described, providing opportunity for multiwavelength sensing with high figure of merit.
多个等离子体法诺共振通常被认为需要复杂的纳米结构,如多层结构,以提供几个可与亮模式耦合的暗模式。在本文中,我们展示了单层核壳纳米结构中多个法诺共振的存在,其中由于核的轴向偏移引起的几何对称性破缺而出现多个暗模式。我们研究了介电核-金属壳(DCMS)和金属核-介电壳(MCDS)两种结构。与MCDS结构相比,DCMS结构具有更高的调制深度。基于变换光学的分析研究和数值模拟已被用于研究几何和材料参数对所提出的纳米结构光学性质的作用。还描述了利用高阶法诺共振进行折射率传感,为具有高品质因数的多波长传感提供了机会。