Publication | Open Access
Integrated optical frequency shifter in silicon-organic hybrid (SOH) technology
47
Citations
36
References
2016
Year
PhotonicsOptical MaterialsOptical InterconnectsSingle-sideband ModulationEngineeringOptical Frequency ShifterOptical PropertiesApplied PhysicsMicrowave PhotonicsOptical SwitchingFrequency ShiftsPhotonic Integrated CircuitWaveguide-based Frequency ShifterPhotonic DeviceOptoelectronicsSilicon PhotonicsNanophotonics
We demonstrate for the first time a waveguide-based frequency shifter on the silicon photonic platform using single-sideband modulation. The device is based on silicon-organic hybrid (SOH) electro-optic modulators, which combine conventional silicon-on-insulator waveguides with highly efficient electro-optic cladding materials. Using small-signal modulation, we demonstrate frequency shifts of up to 10 GHz. We further show large-signal modulation with optimized waveforms, enabling a conversion efficiency of -5.8 dB while suppressing spurious side-modes by more than 23 dB. In contrast to conventional acousto-optic frequency shifters, our devices lend themselves to large-scale integration on silicon substrates, while enabling frequency shifts that are several orders of magnitude larger than those demonstrated with all-silicon serrodyne devices.
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