Publication | Closed Access
Surface-Enhanced Nonlinear Four-Wave Mixing
238
Citations
13
References
2010
Year
EngineeringNano-opticsNonlinear OpticsSurface WaveMetasurfacesSurface-enhanced Nonlinear Four-waveNonlinear ResponseNonlinear Wave PropagationNumerical SimulationNanophotonicsPlasmonic MaterialPhotonicsPhysicsNon-linear OpticMultiphase FlowNanostructured Gold SurfacesPlasmonicsApplied PhysicsDynamic MetamaterialsLaser-surface InteractionsFrequency Conversion
We report on a particularly strong third-order nonlinear response from nanostructured gold surfaces. Two incident laser beams with frequencies omega{1} and omega{2} give rise to four-wave mixing (4WM) fields with frequencies 2omega{1}-omega{2} and 2omega{2}-omega{1}. We demonstrate that the nonlinear response can be purely evanescent and that nanostructured surfaces convert the evanescent energy into propagating radiation, thereby increasing the efficiency of frequency conversion. The emitted 4WM radiation is found to be directional, polarized, coherent, and both frequency and angle tunable. The ability to perform efficient frequency conversion in reduced dimensions provides new opportunities for nanophotonics and active plasmonics.
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