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Optical Characteristic and Numerical Study of Gold Nanoparticles on Al_2O_3 coated Gold Film for Tunable Plasmonic Sensing Platforms

机译:Al_2O_3涂层金膜上可调谐等离子传感平台上金纳米粒子的光学特性和数值研究

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Substrate-based tuning of plasmon resonances on gold nanoparticles (NP) is a versatile method of achieving plasmon resonances at a desired wavelength, and offers reliable nanogap sizes and large field enhancement factors. The reproducibility and relative simplicity of these structures makes them promising candidates for frequency-optimized sensing substrates. The underlying principle in resonance tuning of such a structure is the coupling between a metal nanoparticle and the substrate, which leads to a resonance shift and a polarization dependent scattering response. In this work, we experimentally investigate the optical scattering spectra of isolated 60 nm diameter gold nanoparticles on aluminum oxide (Al_2O_3) coated gold films with various oxide thicknesses. Dark-field scattering images and scattering spectra of gold particles reveal two distinct resonance modes. The experimental results are compared with numerical simulations, revealing the magnitude and phase relationships between the effective dipoles of the gold particle and the gold substrate. The numerical approach is described in detail, and enables the prediction of the resonance responses of a particle-on-film structure using methods that are available in many available electromagnetics simulation packages. The simulated scattering spectra match the experimentally observed data remarkably well, demonstrating the usefulness of the presented approach to researchers in the field.
机译:金纳米粒子(NP)上基于等离子共振的基于基团的调谐是一种实现所需波长的等离子共振的通用方法,并提供可靠的纳米间隙尺寸和较大的场增强因子。这些结构的可再现性和相对简单性使其成为频率优化感测基板的有希望的候选者。这种结构的共振调谐的基本原理是金属纳米粒子与基板之间的耦合,这导致共振位移和偏振相关的散射响应。在这项工作中,我们实验研究分离的60 nm直径的金纳米粒子在氧化铝(Al_2O_3)涂层的金膜上具有不同氧化物厚度的光学散射光谱。金粒子的暗场散射图像和散射光谱揭示了两种不同的共振模式。将实验结果与数值模拟进行比较,揭示了金粒子和金基底的有效偶极子之间的大小和相位关系。数值方法进行了详细描述,并且可以使用许多可用的电磁仿真程序包中提供的方法来预测膜上颗粒结构的共振响应。模拟的散射光谱与实验观察到的数据非常吻合,证明了该方法对本领域研究人员的有用性。

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