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Probing the Quantum Tunneling Limit of Plasmonic Enhancement by Third Harmonic Generation

机译:探索第三谐波产生的等离子体增强等离子体的量子隧穿极限

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摘要

Metal nanostructures provide extreme focusing of optical energy that is limited fundamentally by quantum tunneling. We directly probe the onset of the quantum tunneling regime observed by a sharp reduction in the local field intensity in subnanometer self-assembled monolayer gaps using third harmonic generation. Unlike past works that have inferred local limits from far-field spectra, this nonlinear measurement is sensitive to the near-field intensity as the third power. We calculate the local field intensity using a quantum corrected model and find good quantitative agreement with the measured third harmonic. The onset of the quantum regime occurs for double the gap size of past studies because of the reduced barrier height of the self-assembled monolayer, which will be critical for many applications of plasmonics, including nonlinear optics and surface enhanced Raman spectroscopy.
机译:金属纳米结构提供了光能的极端聚焦,而光能的聚焦基本上受到量子隧穿的限制。我们直接探测通过使用三次谐波产生的亚纳米自组装单层间隙中的局部场强的急剧减小所观察到的量子隧穿机制的开始。与以往的从远场光谱推断出局部极限的工作不同,这种非线性测量对近场强度敏感,是三次方。我们使用量子校正模型计算局部场强,并与测得的三次谐波找到良好的定量一致性。由于自组装单分子层的势垒高度降低,量子态的发生是过去研究间隙尺寸的两倍,这对于等离子技术的许多应用(包括非线性光学和表面增强拉曼光谱学)将是至关重要的。

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