Broadband, electrically tunable third-harmonic generation in graphene

被引:0
|
作者
Giancarlo Soavi
Gang Wang
Habib Rostami
David G. Purdie
Domenico De Fazio
Teng Ma
Birong Luo
Junjia Wang
Anna K. Ott
Duhee Yoon
Sean A. Bourelle
Jakob E. Muench
Ilya Goykhman
Stefano Dal Conte
Michele Celebrano
Andrea Tomadin
Marco Polini
Giulio Cerullo
Andrea C. Ferrari
机构
[1] University of Cambridge,Cambridge Graphene Centre
[2] Graphene Labs,Istituto Italiano di Tecnologia
[3] IFN-CNR,Dipartimento di Fisica
[4] Politecnico di Milano,undefined
来源
Nature Nanotechnology | 2018年 / 13卷
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摘要
Optical harmonic generation occurs when high intensity light (>1010 W m–2) interacts with a nonlinear material. Electrical control of the nonlinear optical response enables applications such as gate-tunable switches and frequency converters. Graphene displays exceptionally strong light–matter interaction and electrically and broadband tunable third-order nonlinear susceptibility. Here, we show that the third-harmonic generation efficiency in graphene can be increased by almost two orders of magnitude by controlling the Fermi energy and the incident photon energy. This enhancement is due to logarithmic resonances in the imaginary part of the nonlinear conductivity arising from resonant multiphoton transitions. Thanks to the linear dispersion of the massless Dirac fermions, gate controllable third-harmonic enhancement can be achieved over an ultrabroad bandwidth, paving the way for electrically tunable broadband frequency converters for applications in optical communications and signal processing.
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页码:583 / 588
页数:5
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