Khokhlov Nikolai, Knyazev Grigoriy, Glavin Boris, Shtykov Yakov, Romanov Oleg, Belotelov Vladimir
Opt Lett. 2017 Sep 15;42(18):3558-3561. doi: 10.1364/OL.42.003558.
In this Letter, we introduce an approach for manipulation of active plasmon polaritons via acoustic waves at sub-terahertz frequency range. The acoustic structures considered are designed as phononic Fabry-Perot microresonators where mirrors are presented with an acoustic superlattice and the structure's surface, and a plasmonic grating is placed on top of the acoustic cavity so formed. It provides phonon localization in the vicinity of the plasmonic grating at frequencies within the phononic stop band enhancing phonon-light interaction. We consider phonon excitation by shining a femtosecond laser pulse on the plasmonic grating. Appropriate theoretical model was used to describe the acoustic process caused by the pump laser pulse in the GaAs/AlAs-based acoustic cavity with a gold grating on top. Strongest modulation is achieved upon excitation of propagating surface plasmon polaritons and hybridization of propagating and localized plasmons. The relative changes in the optical reflectivity of the structure are more than an order of magnitude higher than for the structure without the plasmonic film.
在本信函中,我们介绍了一种在亚太赫兹频率范围内通过声波操纵有源表面等离激元极化激元的方法。所考虑的声学结构被设计为声子法布里 - 珀罗微谐振器,其中反射镜由声学超晶格和结构表面构成,并且在如此形成的声学腔顶部放置了一个等离子体光栅。它在声子禁带内的频率下在等离子体光栅附近提供声子局域化,增强了声子 - 光相互作用。我们考虑通过在等离子体光栅上照射飞秒激光脉冲来激发声子。使用适当的理论模型来描述在顶部带有金光栅的基于GaAs/AlAs的声学腔中泵浦激光脉冲引起的声学过程。在传播表面等离激元极化激元的激发以及传播和局域等离激元的杂化时实现最强调制。该结构的光学反射率的相对变化比没有等离子体薄膜的结构高出一个数量级以上。