Publication | Closed Access
Electrically Controlled Nonlinear Generation of Light with Plasmonics
272
Citations
46
References
2011
Year
PhotonicsPlasmonicsOptical MaterialsFundamental WaveNano-opticsNonlinear OpticsPhysicsPlasmonic NanocavityEngineeringNon-linear OpticApplied PhysicsNonlinear GenerationModerate External VoltageDynamic MetamaterialsOptoelectronicsNanophotonicsElectro-optics DevicePlasmonic Material
Plasmonics provides a route to develop ultracompact optical devices on a chip by using extreme light concentration and the ability to perform simultaneous electrical and optical functions. These properties also make plasmonics an ideal candidate for dynamically controlling nonlinear optical interactions at the nanoscale. We demonstrate electrically tunable harmonic generation of light from a plasmonic nanocavity filled with a nonlinear medium. The metals that define the cavity also serve as electrodes that can generate high direct current electric fields across the nonlinear material. A fundamental wave at 1.56 micrometers was frequency doubled and modulated in intensity by applying a moderate external voltage to the electrodes, yielding a voltage-dependent nonlinear generation with a normalized magnitude of ~7% per volt.
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