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蝴蝶结纳米孔径阵列中偏振相关表面等离子体共振的近场和远场研究

Near- and far-field study of polarization-dependent surface plasmon resonance in bowtie nano-aperture arrays.

作者信息

Choi Sungho, Park Jongkyoon, Chew Soo Hoon, Khurelbaatar Tsendsuren, Gliserin Alexander, Kim Seungchul, Kim Dong Eon

出版信息

Opt Express. 2023 Sep 25;31(20):31760-31767. doi: 10.1364/OE.497045.

Abstract

Bowtie nano-apertures can confine light into deep subwavelength volumes with extreme field enhancement, making them a useful tool for various applications such as optical trapping, deep subwavelength imaging, nanolithography, and sensors. However, the correlation between the near- and far-field properties of bowtie nano-aperture arrays has yet to be fully explored. In this study, we experimentally investigated the polarization-dependent surface plasmon resonance in bowtie nano-aperture arrays using both optical transmission spectroscopy and photoemission electron microscopy. The experimental results reveal a nonlinear redshift in the transmission spectra as the gap size of the bowtie nanoaperture decreases for vertically polarized light, while the transmission spectra remain unchanged with different gap sizes for horizontally polarized light. To elucidate the underlying mechanisms, we present simulated charge and current distributions, revealing how the electrons respond to light and generate the plasmonic fields. These near-field distributions were verified by photoemission electron microscopy. This study provides a comprehensive understanding of the plasmonic properties of bowtie nano-aperture, enabling their further applications, one of which is the optical switching of the resonance wavelength in the widely used visible spectral region without changing the geometry of the nanostructure.

摘要

蝴蝶结形纳米孔能够将光限制在具有极高场增强的深亚波长体积内,使其成为用于诸如光镊、深亚波长成像、纳米光刻和传感器等各种应用的有用工具。然而,蝴蝶结形纳米孔阵列的近场和远场特性之间的相关性尚未得到充分探索。在本研究中,我们使用光学透射光谱和光发射电子显微镜对蝴蝶结形纳米孔阵列中偏振依赖的表面等离子体共振进行了实验研究。实验结果表明,对于垂直偏振光,随着蝴蝶结形纳米孔的间隙尺寸减小,透射光谱中出现非线性红移,而对于水平偏振光,透射光谱在不同间隙尺寸下保持不变。为了阐明其潜在机制,我们展示了模拟的电荷和电流分布,揭示了电子如何响应光并产生等离子体场。这些近场分布通过光发射电子显微镜得到了验证。本研究全面理解了蝴蝶结形纳米孔的等离子体特性,使其能够进一步应用,其中之一是在不改变纳米结构几何形状的情况下,在广泛使用的可见光谱区域实现共振波长的光开关。

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