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金属条形波导中束缚等离子体模式的近场特性

Near-field characterization of bound plasmonic modes in metal strip waveguides.

作者信息

Zenin Vladimir A, Malureanu Radu, Radko Ilya P, Lavrinenko Andrei V, Bozhevolnyi Sergey I

出版信息

Opt Express. 2016 Mar 7;24(5):4582-4590. doi: 10.1364/OE.24.004582.

Abstract

Propagation of bound plasmon-polariton modes along 30-nm-thin gold strips on a silica substrate at the free-space wavelength of 1500 nm is investigated both theoretically and experimentally when decreasing the strip width from 1500 nm down to the aspect-ratio limited width of 30 nm, which ensures deep subwavelength mode confinement. The main mode characteristics (effective mode index, propagation length, and mode profile) are determined from the experimental amplitude- and phase-resolved near-field images for various strip widths (from 30 to 1500 nm), and compared to numerical simulations. The mode supported by the narrowest strip is found to be laterally confined within ~ 100 nm at the air side, indicating that the realistic limit for radiation nanofocusing in air using tapered metal strips is ~ λ/15.

摘要

当将条带宽度从1500nm减小到长宽比限制宽度30nm时,研究了在1500nm自由空间波长下,束缚等离激元 - 极化子模式在二氧化硅衬底上30nm厚的金条上的传播情况,这确保了深亚波长模式限制。通过对各种条带宽度(从30nm到1500nm)的实验振幅和相位分辨近场图像确定主要模式特征(有效模式折射率、传播长度和模式轮廓),并与数值模拟进行比较。发现最窄条带所支持的模式在空气侧横向限制在约100nm内,这表明使用锥形金属条在空气中进行辐射纳米聚焦的实际极限约为λ/15。

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