Publication | Open Access
40 GHz electro-optic modulation in hybrid silicon–organic slotted photonic crystal waveguides
64
Citations
13
References
2010
Year
Photonic DevicePhotonicsEngineeringNonlinear OpticsOptical PropertiesBroadband Electro-optic ModulationNonlinear Optical PolymerGuided-wave OpticSlotted Waveguide DesignOptoelectronic DevicesPhotonic Integrated CircuitGhz Electro-optic ModulationMicrowave PhotonicsOptoelectronicsPhotonic CrystalsNanophotonicsElectro-optics DevicePhotonic Crystal Waveguides
In this Letter we demonstrate broadband electro-optic modulation with frequencies of up to 40 GHz in slotted photonic crystal waveguides based on silicon-on-insulator substrates covered and infiltrated with a nonlinear optical polymer. Two-dimensional photonic crystal waveguides in silicon enable integrated optical devices with an extremely small geometric footprint on the scale of micrometers. The slotted waveguide design optimizes the overlap of the optical and electric fields in the second-order nonlinear optical medium and, hence, the interaction of the optical and electric waves.
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