Publication | Open Access
Silicon-Germanium Dioxide and Aluminum Indium Gallium Arsenide-Based Acoustic Optic Modulators
89
Citations
32
References
2020
Year
Optical MaterialsEngineeringOptical Transmission SystemAcoustic MetamaterialOptical ModulationSilicon-germanium DioxideSilicon On InsulatorOptical AmplifierOptical PropertiesGuided-wave OpticPhotonic Integrated CircuitOptical CommunicationAcoustic Optic ModulatorsPhotonicsElectrical EngineeringMicroelectronicsElectro-optics DeviceApplied PhysicsIntensity ModulationTransient Time ResponseOptoelectronics
Abstract The purpose of this study was to clarify the silicon-germanium dioxide (SiGeO2) and Aluminum Indium Gallium Arsenide (AlInGaAs) based acoustic optic modulators for upgrading transmission performance characteristics. The transient time response of these modulators is analyzed and discussed in detail. The 3-dB modulation signal bandwidth, diffraction signal efficiency, signal rise time, and signal quality factor with minimum data error rates are also considered. The proposed models with silicon-germanium dioxide and Aluminum Indium Gallium Arsenide acoustic optic modulators were compared to the previous model with silicon acoustic optic modulators. The results confirmed the high-performance efficiency of the proposed models when compared to the previous model, in both the lowest transient time response and the highest acoustic optic modulators speed response.
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