Sikdar Debabrata, Kornyshev Alexei A
Department of Chemistry, Faculty of Natural Sciences, Imperial College London, Exhibition Road, South Kensington, London, SW7 2AZ, United Kingdom.
Sci Rep. 2016 Sep 22;6:33712. doi: 10.1038/srep33712.
Two-dimensional arrays of plasmonic nanoparticles at interfaces are promising candidates for novel optical metamaterials. Such systems materialise from 'top-down' patterning or 'bottom-up' self-assembly of nanoparticles at liquid/liquid or liquid/solid interfaces. Here, we present a comprehensive analysis of an extended effective quasi-static four-layer-stack model for the description of plasmon-resonance-enhanced optical responses of such systems. We investigate in detail the effects of the size of nanoparticles, average interparticle separation, dielectric constants of the media constituting the interface, and the nanoparticle position relative to the interface. Interesting interplays of these different factors are explored first for normally incident light. For off-normal incidence, the strong effects of the polarisation of light are found at large incident angles, which allows to dynamically tune the reflectance spectra. All the predictions of the theory are tested against full-wave simulations, proving this simplistic model to be adequate within the quasi-static limit. The model takes seconds to calculate the system's optical response and makes it easy to unravel the effect of each system parameter. This helps rapid rationalization of experimental data and understanding of the optical signals from these novel 'metamaterials', optimised for light reflection or harvesting.
界面处的等离子体纳米颗粒二维阵列是新型光学超材料的有前途的候选者。此类系统通过纳米颗粒在液/液或液/固界面处的“自上而下”图案化或“自下而上”自组装形成。在此,我们对一个扩展的有效准静态四层堆叠模型进行了全面分析,以描述此类系统的等离子体共振增强光学响应。我们详细研究了纳米颗粒尺寸、平均颗粒间距、构成界面的介质的介电常数以及纳米颗粒相对于界面的位置的影响。首先针对垂直入射光探究了这些不同因素的有趣相互作用。对于非垂直入射,在大入射角处发现了光偏振的强烈影响,这使得能够动态调谐反射光谱。该理论的所有预测都与全波模拟进行了对比测试,证明这个简单模型在准静态极限内是足够的。该模型计算系统的光学响应只需几秒钟,并且便于揭示每个系统参数的影响。这有助于快速合理地分析实验数据,并理解来自这些为光反射或光捕获而优化的新型“超材料”的光学信号。