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Large-Area Two-Dimensional Plasmonic Meta-Glasses and Meta-Crystals: a Comparative Study

机译:大面积二维等离子超玻璃和超晶体的比较研究

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摘要

The geometrical arrangement of metallic nanoparticles plays a crucial role on the optical response of nanoplasmonic samples due to particle-particle interactions. In this work, large-area, two-dimensional meta-glasses (random arrangements) and meta-crystals (periodic arrangements) made of identical metallic nanoparticles are investigated for three different particle densities of 5, 10, and 15 discs/μm2. A direct comparison between random and periodically ordered arrays is presented. The comparison clearly shows that the particle density has the largest influence on the extinction spectra for both periodic and random samples, and that for equal densities, the optical response away from diffraction effects is strikingly similar in both cases. The role of the radial density function and minimum particle distance is also determined. This study elucidates the role of the particle-particle interactions on the response of plasmonic nanoparticles and indicates how to control position and shape of the plasmonic resonance.
机译:由于颗粒间的相互作用,金属纳米颗粒的几何排列对纳米等离子体样品的光学响应起着至关重要的作用。在这项工作中,研究了由相同金属纳米粒子制成的大面积二维超玻璃(随机排列)和超晶体(周期性排列)的三种不同的粒子密度,分别为5、10和15个圆盘/μm 2 。提出了随机阵列与周期性阵列之间的直接比较。比较清楚地表明,对于周期性样品和随机样品,颗粒密度对消光光谱的影响最大;对于相同密度的样品,两种情况下,远离衍射效应的光学响应都极为相似。还确定了径向密度函数和最小粒子距离的作用。这项研究阐明了粒子间相互作用对等离子体纳米颗粒响应的作用,并指出了如何控制等离子体共振的位置和形状。

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