Publication | Closed Access
Numerical Study of Few-Cycle Pulses by Nonlinear Compression in Two-Photon Semiconductor Amplifiers
11
Citations
14
References
2008
Year
Optical MaterialsEngineeringNonlinear OpticsOptical AmplifierNumerical StudyOptical PropertiesOptical SolitonNonlinear CompressionFiber LaserPhotonicsPhysicsNon-linear OpticTwo-photon Semiconductor AmplifiersNonlinear Two-photon ProcessApplied PhysicsOptical Pulse CompressionSemiconductor Two-photon GainOptoelectronicsFibre Amplifier
Optical pulse compression down to a few optical cycles by the ultrabroadband gain of nonlinear two-photon process in semiconductors is proposed. Recent experimental demonstration of semiconductor two-photon gain (TPG) has motivated this analysis of ultrashort pulse dynamics with realistic semiconductor parameters. Comprehensive material model, including TPG, carrier depletion, linear absorption, Kerr effect, plasma response of injected carriers, and the material dispersion were numerically simulated using the finite-difference time-domain method. Pulse compression down to a few optical cycles is theoretically predicted.
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