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Visualization of Nanoplasmonic Coupling to Molecular Orbital in Light Emission Induced by Tunneling Electrons

机译:隧道电子诱导发光中分子轨道的纳米升性耦合的可视化

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The coupling between localized plasmon and molecular orbital in the light emission from a metallic nanocavity has been directly detected and imaged with sub-0.1 nm resolution. The light emission intensity was enhanced when the energy difference between the tunneling electrons and the lowest unoccupied molecular orbital (LUMO) of an azulene molecule matches the energy of a plasmon mode of the nanocavity defined by the Ag-tip and Ag (110) substrate of a scanning tunneling microscope (STM). The spatially resolved image of the light emission intensity matches the spatial distribution of the LUMO obtained by scanning tunneling spectroscopy (STS) and density functional theory (DFT) calculations. Our results highlight the near-field coupling of a molecular orbital to the radiative decay of a plasmonic excitation in a confined nanoscale junction.
机译:通过亚-0.1nm分辨率直接检测和成像,直接检测局部等离子体和分子轨道之间的偶联和分子轨道之间的偶联。 当氮素分子的最低未占用分子(Lumo)之间的能量差与由Ag-Tip和Ag(110)基底限定的纳米腔的等离子体模式的能量匹配时,发光强度提高了发光强度 扫描隧道显微镜(STM)。 发光强度的空间分辨图像与通过扫描隧道光谱(STS)和密度泛函理论(DFT)计算获得的LUMO的空间分布匹配。 我们的结果突出了分子轨道在狭窄的纳米级结中辐射衰减的分子轨道辐射的近场耦合。

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