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单根银纳米棒的颜色路由

Colour routing with single silver nanorods.

作者信息

Zhuo Xiaolu, Yip Hang Kuen, Cui Ximin, Wang Jianfang, Lin Hai-Qing

机构信息

1Department of Physics, The Chinese University of Hong Kong, Shatin, Hong Kong SAR, China.

2Beijing Computational Science Research Center, Beijing, 100193 China.

出版信息

Light Sci Appl. 2019 Apr 17;8:39. doi: 10.1038/s41377-019-0150-1. eCollection 2019.

Abstract

Elongated plasmonic nanoparticles have been extensively explored over the past two decades. However, in comparison with the dipolar plasmon mode that has attracted the most interest, much less attention has been paid to multipolar plasmon modes because they are usually thought to be "dark modes", which are unable to interact with far-field light efficiently. Herein, we report on an intriguing far-field scattering phenomenon, colour routing, based on longitudinal multipolar plasmon modes supported by high-aspect-ratio single Ag nanorods. Taking advantage of the distinct far-field behaviours of the odd and even multipolar plasmon modes, we demonstrate two types of colour routing, where the incident white light can be scattered into several beams with different colours as well as different propagation directions. Because of the narrow linewidths of the longitudinal multipolar plasmon modes, there is little spectral overlap between the adjacent peaks, giving rise to outstanding colour selectivity. Our experimental results and theoretical model provide a simple yet effective picture for understanding the far-field behaviour of the longitudinal multipolar plasmon modes and the resultant colour routing phenomenon. Moreover, the outstanding colour routing capability of the high-aspect-ratio Ag nanorods enables nanoscale optical components with simple geometries for controlling the propagation of light below the diffraction limit of light.

摘要

在过去二十年中,人们对细长的等离子体纳米颗粒进行了广泛研究。然而,与最受关注的偶极等离子体模式相比,多极等离子体模式受到的关注要少得多,因为它们通常被认为是“暗模式”,无法与远场光有效相互作用。在此,我们报道了一种基于高纵横比单根银纳米棒所支持的纵向多极等离子体模式的有趣远场散射现象——颜色路由。利用奇数和偶数多极等离子体模式不同的远场行为,我们展示了两种类型的颜色路由,其中入射白光可以被散射成几束具有不同颜色和不同传播方向的光束。由于纵向多极等离子体模式的线宽较窄,相邻峰之间几乎没有光谱重叠,从而产生了出色的颜色选择性。我们的实验结果和理论模型为理解纵向多极等离子体模式的远场行为以及由此产生的颜色路由现象提供了一个简单而有效的图景。此外,高纵横比银纳米棒出色的颜色路由能力使得具有简单几何形状的纳米级光学元件能够在光的衍射极限以下控制光的传播。

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