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利用光学谐振器模式实现等离子体信号的通用切换。

Universal switching of plasmonic signals using optical resonator modes.

作者信息

McPolin Cillian Pt, Olivier Nicolas, Bouillard Jean-Sebastien, O'Connor Daniel, Krasavin Alexey V, Dickson Wayne, Wurtz Gregory A, Zayats Anatoly V

机构信息

Department of Physics, King's College London, Strand, London WC2R 2LS, UK.

Present address: University of Sheffield, Hounsfield Road, Sheffield S3 7RH, UK.

出版信息

Light Sci Appl. 2017 Jun 2;6(6):e16237. doi: 10.1038/lsa.2016.237. eCollection 2017 Jun.

Abstract

We propose and investigate, both experimentally and theoretically, a novel mechanism for switching and modulating plasmonic signals based on a Fano interference process, which arises from the coupling between a narrow-band optical Fabry-Pérot cavity and a surface plasmon polariton (SPP) source. The SPP wave emitted from the cavity is actively modulated in the vicinity of the cavity resonances by altering the cavity Q-factor and/or resonant frequencies. We experimentally demonstrate dynamic SPP modulation both by mechanical control of the cavity length and all-optically by harnessing the ultrafast nonlinearity of the Au mirrors that form the cavity. An electro-optical modulation scheme is also proposed and numerically illustrated. Dynamic operation of the switch via mechanical means yields a modulation in the SPP coupling efficiency of ~80%, while the all-optical control provides an ultrafast modulation with an efficiency of 30% at a rate of ~0.6 THz. The experimental observations are supported by both analytical and numerical calculations of the mechanical, all-optical and electro-optical modulation methods.

摘要

我们通过实验和理论研究,提出了一种基于法诺干涉过程来切换和调制等离子体信号的新机制,该过程源于窄带光学法布里 - 珀罗腔与表面等离激元极化激元(SPP)源之间的耦合。通过改变腔的品质因数和/或共振频率,从腔中发射出的SPP波在腔共振附近被主动调制。我们通过机械控制腔长度以及利用构成腔的金镜的超快非线性进行全光控制,实验证明了动态SPP调制。还提出了一种电光调制方案并进行了数值说明。通过机械手段实现的开关动态操作在SPP耦合效率上产生了约80%的调制,而全光控制以约0.6太赫兹的速率提供了30%效率的超快调制。机械、全光和电光调制方法的分析和数值计算均支持实验观察结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85a3/6062243/b6cd3228eb58/lsa2016237f1.jpg

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