Publication | Closed Access
High-efficiency optical frequency mixing in an all-dielectric metasurface enabled by multiple bound states in the continuum
86
Citations
42
References
2023
Year
Quantum PhotonicsEngineeringNonlinear OpticsNegative-index MetamaterialMetasurfacesMetamaterialsMultiple Bound StatesElectromagnetic MetamaterialsQuantum MetamaterialsOptical PropertiesHigh-efficiency Optical FrequencyQuantum NanophotonicsNanophotonicsPhotonicsPhysicsElectric Field EnergyAll-dielectric MetasurfaceNon-linear OpticMetaopticsPhotonic DeviceElectro-optics DeviceUltracompact Optical MixerApplied PhysicsDynamic Metamaterials
We present nonlinear optical four-wave mixing in a silicon nanodisk dimer metasurface. Under the oblique incident plane waves, the designed metasurface exhibits a multiresonant feature with simultaneous excitations of three quasi-bound states in the continuum (BIC). Through employing these quasi-BICs with maximizing electric field energy at the input bump wavelengths, significant enhancement of third-order nonlinear processes including third-harmonic generation, degenerate and nondegenerate four-wave mixing are demonstrated, giving rise to ten frequencies in the visible wavelengths. This work may lead to a new frontier of ultracompact optical mixer for applications in optical circuitry, ultrasensitive sensing, and quantum nanophotonics.
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