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基于自组装碳纳米管的可调谐双曲线超材料。

Tunable Hyperbolic Metamaterials Based on Self-Assembled Carbon Nanotubes.

作者信息

Roberts John Andris, Yu Shang-Jie, Ho Po-Hsun, Schoeche Stefan, Falk Abram L, Fan Jonathan A

机构信息

Department of Applied Physics , Stanford University , Stanford , California 94305 , United States.

Department of Electrical Engineering , Stanford University , Stanford , California 94305 , United States.

出版信息

Nano Lett. 2019 May 8;19(5):3131-3137. doi: 10.1021/acs.nanolett.9b00552. Epub 2019 Apr 10.

Abstract

We show that packed, horizontally aligned films of single-walled carbon nanotubes are hyperbolic metamaterials with ultrasubwavelength unit cells and dynamic tunability. Using Mueller matrix ellipsometry, we characterize the films' optical properties, which are doping level dependent, and find a broadband hyperbolic region tunable in the mid-infrared. To characterize the dispersion of in-plane hyperbolic plasmon modes, we etch the nanotube films into nanoribbons with differing widths and orientations relative to the nanotube axis, and we observe that the hyperbolic modes support strong light localization. An agreement between the experiments and theoretical models using the ellipsometry data indicates that the packed carbon nanotubes support bulk anisotropic responses at the nanoscale. Self-assembled films of carbon nanotubes are well-suited for applications in thermal emission and photodetection, and they serve as model systems for studying light-matter interactions in the deep subwavelength regime.

摘要

我们表明,单壁碳纳米管的紧密排列、水平对齐的薄膜是具有超亚波长晶胞和动态可调性的双曲型超材料。使用穆勒矩阵椭偏仪,我们表征了薄膜的光学性质,其依赖于掺杂水平,并发现了一个在中红外波段可调的宽带双曲区域。为了表征面内双曲等离激元模式的色散,我们将纳米管薄膜蚀刻成相对于纳米管轴具有不同宽度和取向的纳米带,并且我们观察到双曲模式支持强光局域化。使用椭偏仪数据的实验与理论模型之间的一致性表明,紧密排列的碳纳米管在纳米尺度上支持体各向异性响应。碳纳米管的自组装薄膜非常适合用于热发射和光探测应用,并且它们作为研究深亚波长区域光与物质相互作用的模型系统。

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