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Exploring Coupled Plasmonic Nanostructures in the Near Field by Photoemission Electron Microscopy

机译:通过光发射电子显微镜探索近场中的等离子体等离子体耦合纳米结构

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摘要

The extraordinary optical properties of coupled plasmonic nanostructures make these materials potentially useful in many applications; thus, they have received enormous attention in basic and applied research. Coupled plasmon modes have been characterized predominantly using far-field spectroscopy. In near-field spectroscopy, the spectral response of local field enhancement in coupled plasmonic nanostructures remains largely unexplored, especially experimentally. Here, we investigate the coupled gold dolmen nanostructures in the near field using photoemission electron microscopy, with wavelength tunable femtosecond laser pulses as an excitation source. The spatial evolution of near-field mapping of an individual dolmen structure with the excitation wavelength was successfully obtained. In the near field, we spatially resolved an anti-bonding mode and a bonding mode as the result of plasmon hybridization. Additionally, the quadrupole plasmon mode that could be involved in the formation of a Fano resonance was also revealed by spatially resolved near-field spectra, but it only contributed little to the total near-field enhancement. On the basis of these findings, we obtained a better understanding of the near-field nanostructures, where the plasmon hybridization and the plasmonic Fano resonance were mixed.
机译:耦合等离子体纳米结构的非凡光学性能使这些材料在许多应用中具有潜在的用途。因此,它们在基础和应用研究中受到了极大的关注。耦合等离子体激元模式已主要使用远场光谱进行了表征。在近场光谱学中,耦合等离子体等离子体纳米结构中的局部场增强的光谱响应仍然很大程度上未被探索,特别是在实验上。在这里,我们使用光发射电子飞秒激光脉冲作为激发源,利用光发射电子显微镜在近场中研究了耦合的金都尔门纳米结构。成功地获得了具有激发波长的单个门腔结构的近场映射的空间演化。在近场中,由于等离子体激元杂交的结果,我们在空间上解析了抗键合模式和键合模式。此外,空间分辨的近场光谱还揭示了可能参与Fano共振形成的四极等离子体激元模式,但对总的近场增强贡献很小。在这些发现的基础上,我们对等离激元杂交和等离激元法诺共振混合在一起的近场纳米结构有了更好的了解。

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