Publication | Closed Access
Excitation-density-dependent generation of broadband terahertz radiation in an asymmetrically excited photoconductive antenna
59
Citations
16
References
2007
Year
Thz PhotonicsEngineeringTerahertz PhotonicsBroadband Terahertz RadiationThz EmissionRadiation GenerationOptical PropertiesThz Pulse IntensityPhotonicsTerahertz SpectroscopyScreening FieldPhysicsAntennaExcited Photoconductive AntennaTerahertz DevicesExcitation-density-dependent GenerationApplied PhysicsTerahertz TechniqueOptoelectronics
The generation of terahertz (THz) transients in photoconductive emitters has been studied by varying the spatial extent and density of the optically excited photocarriers in asymmetrically excited, biased low-temperature-grown GaAs antenna structures. We find a pronounced dependence of the THz pulse intensity and broadband (>6.0 THz) spectral distribution on the pump excitation density and simulate this with a three-dimensional carrier dynamics model. We attribute the observed variation in THz emission to changes in the strength of the screening field.
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