Publication | Open Access
Electro-absorption optical modulator using dual-graphene-on-graphene configuration
86
Citations
22
References
2014
Year
Optical MaterialsEngineeringOptoelectronic DevicesGraphene NanomeshesGraphene-based Nano-antennasElectronic DevicesOptical PropertiesNanoelectronicsElectro-absorption Optical ModulatorNanophotonicsPhotonicsElectrical EngineeringDual-graphene-on-graphene ConfigurationGraphene Quantum DotGraphene FiberApplied PhysicsGrapheneGraphene NanoribbonGraphene LayersOptoelectronics
An electro-absorption optical modulator based on dual-graphene-on-graphene configuration is presented and investigated. Four graphene layers are embedded in a silicon-on-insulator (SOI) waveguide, the total metal-graphene contact resistance of this structure is reduced 50% by the graphene layers co-electrode design. By optimizing the position of each graphene-on-graphene (GOG) layer in the waveguide, a strong interaction between graphene layers and light is obtained, which leads to a significant change of the effective mode index (EMI) in the waveguide. Calculations show that an electro-absorption optical modulator can achieve 34 dB extinction ratio (ER) and 100 GHz modulation bandwidth with 5 µm-long active region and 17.6 fJ/bit consumption.
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