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Nanoscale Observation of Real-Space Mid-Infrared Field Distribution in a Stamp-Type Plasmonic Structure

机译:纳米级观察标记型等离子体结构中真实空间中红外场分布

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摘要

By utilizing a scattering-type scanning near-field optical microscopy (s-SNOM) in mid-infrared (MIR) band, we observed nanoscale real-space optical field distribution in a Bull's eye (BE) plasmonic structure, which was fabricated through a template-assisted stamp method. Nanoscale near-field images were shown to agree with plasmonic features of electromagnetic simulation results, showing that the fabricated the BE structure works as a plasmonic device. The s-SNOM thus offers a strong tool for gaining nanoscale real-space optical field distribution in plasmonic micro/nanostructures.
机译:通过利用中红外(MIR)频段中的散射型扫描近场光学显微镜(S-SNOM),我们观察到纳米眼(BE)等级结构中的纳米级实时光学场分布,这是通过A制造的模板辅助邮票方法。显示纳米级近场图像与电磁仿真结果的等离子体特征表示同意,表明制造的BE结构用作等离子体装置。因此,S-SNOM提供了一种强大的工具,用于在等级微/纳米结构中获得纳米级实空空间光学场分布。

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