Publication | Open Access
Fast-switching bistable cholesteric intensity modulator
104
Citations
10
References
2011
Year
EngineeringOptical Transmission SystemAnalog DesignDirect SwitchingOptical ComputingOptical PropertiesMixed-signal Integrated CircuitOptical SwitchingOptical CommunicationOptical SystemsPlanar StateNanophotonicsAnalog-to-digital ConverterPhotonicsBistable StatesElectro-optics DeviceIntensity ModulationApplied PhysicsOptoelectronics
A fast-switching bistable optical intensity modulator is demonstrated. Using a dual-frequency cholesteric liquid crystal, the direct switching is achieved from the scattering focal conic state to the transparent long-pitch planar state. In comparison with the bistable cholesteric devices proposed previously, our device, characterized by its capability of direct two-way transitions between the two bistable states, possesses a very short transition time from the focal conic state to the planar state as short as 10 ms. No voltage has to be applied to sustain the optical states, making the device low energy consuming. Potential applications of this device are addressed.
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