Wei Hong, Pan Deng, Zhang Shunping, Li Zhipeng, Li Qiang, Liu Ning, Wang Wenhui, Xu Hongxing
Institute of Physics, Chinese Academy of Sciences , Beijing 100190 , China.
School of Physics and Technology, and Key Laboratory of Artificial Micro- and Nano-structures of Ministry of Education , Wuhan University , Wuhan 430072 , China.
Chem Rev. 2018 Mar 28;118(6):2882-2926. doi: 10.1021/acs.chemrev.7b00441. Epub 2018 Feb 15.
Nanowires supporting propagating surface plasmons can function as nanowaveguides to realize the light guiding with field confinement beyond the diffraction limit, providing fundamental building blocks for nanophotonic integrated circuits. This review covers the recent developments of plasmon waveguiding in nanowires, mainly including plasmon waveguiding in metal nanowires, coupling of nanowire plasmons and emitters, hybrid nanowire waveguides and plasmonic gain, and nanowire photonic devices. We first introduce the main techniques for fabricating metal nanowires, the plasmon modes in metal nanowires and the excitation/detection methods. We then discuss the fundamental properties of plasmon propagation and emission, including zigzag, chiral and spin-dependent propagation, mode conversion, loss and propagation length, group velocity, terminal emission, and leaky radiation. Then the interactions between nanowires and emitters are reviewed, especially the coupling of single nanowires and single quantum emitters. Finally, we briefly introduce the hybrid nanowire waveguide composed of a semiconductor nanowire and a metal film with an intervening thin insulator and highlight a few nanophotonic devices based on plasmonic nanowire networks or plasmonic-photonic hybrid nanowire structures.
支持传播表面等离子体激元的纳米线可作为纳米波导,以实现具有超越衍射极限的场限制的光导,为纳米光子集成电路提供基本构建块。本文综述了纳米线中等离子体激元波导的最新进展,主要包括金属纳米线中的等离子体激元波导、纳米线等离子体激元和发射器的耦合、混合纳米线波导和等离子体增益以及纳米线光子器件。我们首先介绍制造金属纳米线的主要技术、金属纳米线中的等离子体激元模式以及激发/检测方法。然后我们讨论等离子体激元传播和发射的基本特性,包括曲折、手性和自旋相关传播、模式转换、损耗和传播长度、群速度、终端发射和泄漏辐射。接着综述纳米线与发射器之间的相互作用,特别是单根纳米线与单量子发射器的耦合。最后,我们简要介绍由半导体纳米线和带有中间薄绝缘体的金属膜组成的混合纳米线波导,并重点介绍一些基于等离子体纳米线网络或等离子体-光子混合纳米线结构的纳米光子器件。