Publication | Closed Access
Optical switching using nonlinear polarization rotation inside silicon waveguides
53
Citations
9
References
2009
Year
Fast Kerr ShutterPhotonicsOptical MaterialsEngineeringNonlinear OpticsPhysicsOptical PropertiesApplied PhysicsGuided-wave OpticOptical SwitchingPhotonic Integrated CircuitOptomechanicsNonlinear Polarization RotationPhotonic DeviceOptoelectronicsElectro-optics DeviceNanophotonicsPump Pulse
We study the nonlinear polarization rotation induced by a pump pulse on a probe beam through cross-phase modulation inside a silicon waveguide and show that this phenomenon can be used to realize a fast Kerr shutter in spite of the free-carrier effects and walk-off. We show that free carriers generated by the pump pulse through two-photon absorption affect the switching process considerably, especially with the interaction of walk-off effects. However, numerical simulations reveal that their impact is not detrimental for short pump pulses. In this case, an approximate analytical solution predicts the shape and duration of the switching window with reasonable accuracy.
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