Publication | Open Access
Compact Optical Switches and Modulators Based on Dispersion Engineered Photonic Crystals
94
Citations
38
References
2010
Year
PhotonicsSlow-light Photonic CrystalsOptical MaterialsCompact Optical SwitchesEngineeringOptical PropertiesOptical ModulationPhotonic MaterialsApplied PhysicsOptical PulsesOptical SwitchingPhotonic Integrated CircuitUltrafast OpticsPhotonic DeviceOptoelectronicsPhotonic CrystalsNanophotonics
We use slow-light photonic crystals to enhance optical switching and modulation in silicon. By using dispersion-engineered designs, a switch as short as 5 ¿m was achieved, in which we have demonstrated rerouting of optical pulses on a 3-ps time scale through the absorption of a femtosecond pulse. We additionally demonstrate a modulator with a Mach-Zehnder interferometer (MZI) configuration with flat-band slow-light photonic crystal phase shifters that is designed to give a large group-index-bandwidth product. An extinction ratio in excess of 15 dB is obtained over the entire 11-nm bandwidth of the modulator.
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