Hoffmann Jón Mattis, Janssen Hendrik, Chigrin Dmitry N, Taubner Thomas
Opt Express. 2014 Jun 16;22(12):14425-32. doi: 10.1364/OE.22.014425.
We use nanosphere lithography in combination with two evaporation steps to create bow-tie like infrared antennas with small gaps. The angle of the sample with respect to the evaporation source is changed between two evaporation steps resulting in a displacement of the respective antenna arrays and, therefore, in decreased antenna-gaps. Furthermore, we demonstrate the gap-dependency of surface-enhanced infrared absorption (SEIRA) spectroscopy using the absorption band of the natural SiO(2)-layer of the silicon substrate and antennas with different gap size. A multi-oscillator-model is used to describe the Fano-like spectral coupling of the antenna resonances with the SiO(2) absorption band.
我们将纳米球光刻技术与两步蒸发法相结合,以制造具有小间隙的蝴蝶结状红外天线。在两步蒸发过程中,样品相对于蒸发源的角度发生变化,导致相应天线阵列发生位移,从而减小了天线间隙。此外,我们利用硅衬底天然SiO(2)层的吸收带以及具有不同间隙尺寸的天线,展示了表面增强红外吸收(SEIRA)光谱的间隙依赖性。我们使用多振荡器模型来描述天线共振与SiO(2)吸收带之间类似法诺的光谱耦合。