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首页> 外文期刊>Physical review >Control Of Surface Plasmon Resonances In Dielectrically Coated Proximate Gold Nanoparticlesrnimmobilized On A Substrate
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Control Of Surface Plasmon Resonances In Dielectrically Coated Proximate Gold Nanoparticlesrnimmobilized On A Substrate

机译:介电涂层固定在基质上的近电纳米金颗粒中表面等离子体共振的控制

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摘要

We present experimental and theoretical results for the changes in the optical-plasmon resonance of gold-nanoparticle dimers immobilized on a surface when coated with an organic dielectric material. The plasmon band of a nanoparticle dimer shifts to a higher wavelength when the distance between neighbonng particles is decreased, and a well-separated second peak appears. This phenomenon is called cross-talk. We find that an organic coating lets cross-talk start at larger separation distances than for uncoated dimers by bridging the gap between immobilized nanoparticles (creating optical clusters). We study this optical clustering effect as a function of the polarization of the applied light, of the inter-particle distance, of the surrounding environment, and of the optical properties of the coating layer. Theoretical discrete-dipole approximation calculations support the experimental absorption spectroscopy results of gold nanoparticles on glass substrates and on optical waveguides.
机译:我们提出了实验和理论结果,用于当涂覆有机介电材料时,固定在表面上的金纳米粒子二聚体的光学等离子体共振变化。当相邻粒子之间的距离减小时,纳米粒子二聚体的等离激元带移至更高的波长,并且出现了分离良好的第二峰。这种现象称为串扰。我们发现有机涂层通过弥合固定的纳米颗粒之间的间隙(产生光学簇),使串扰在比未涂层的二聚体更大的分离距离处开始。我们研究了这种光学聚集效应,它是所施加的光的偏振,粒子间距离,周围环境以及涂层光学特性的函数。理论上的离散偶极近似计算支持了玻璃基底和光波导上金纳米粒子的实验吸收光谱结果。

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