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首页> 外文期刊>ACS nano >Near- and Far-Field Properties of Plasmonic Oligomers under Radially and Azimuthally Polarized Light Excitation
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Near- and Far-Field Properties of Plasmonic Oligomers under Radially and Azimuthally Polarized Light Excitation

机译:径向和方位偏振光激发下的等离子体低聚物的近场和远场特性

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We present a comprehensive experimental and theoretical study on the near- and far-field properties of plasmonic oligomers using radially and azimuthally polarized excitation. These unconventional polarization states are perfectly matched to the high spatial symmetry of the oligomers and thus allow for the excitation of some of the highly symmetric eigenmodes of the structures, which cannot be excited by linearly polarized light. In particular, we study hexamer and heptamer structures and strikingly find very similar optical responses, as well as the absence of a Fano resonance. Furthermore, we investigate the near-field distributions of the oligomers using near-field scanning optical microscopy (NSOM). We observe significantly enhanced near-fields, which arise from efficient excitation of the highly symmetric eigenmodes by the radially and azimuthally polarized light fields. Our study opens up possibilities for tailored light-matter interaction, combining the design freedom of complex plasmonic structures with the remarkable properties of radially and azimuthally polarized light fields.
机译:我们提供了使用径向和方位极化激发的等离激元低聚物的近场和远场特性的综合实验和理论研究。这些非常规的偏振态与低聚物的高空间对称性完全匹配,因此可以激发结构的某些高对称本征模,而线性偏振光无法激发本征模。特别是,我们研究了六聚体和七聚体的结构,并惊人地发现了非常相似的光学响应,以及不存在Fano共振。此外,我们使用近场扫描光学显微镜(NSOM)研究了低聚物的近场分布。我们观察到显着增强的近场,这是由于径向和方位偏振光场对高对称本征模的有效激发而产生的。我们的研究为复杂的等离激元结构的设计自由度以及径向和方位偏振光场的显着特性提供了量身定制的光-物质相互作用的可能性。

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