IEEE Journal of Quantum Electronics · 1990 · 42 citations · 20 references
Categoryquantum ElectronicsEngineeringLaser ScienceTwo-port Circuit ModelCavity QedLaser ApplicationsLaser PhysicsSuper-intense LasersIntegrated CircuitsHigh-power LasersQuantum EngineeringRate EquationsQuantum ComputingSemiconductor LasersComputer-aided AnalysisQw LasersPhotonicsElectrical EngineeringQuantum ScienceFree-electron LasersPhysicsQuantum DeviceQuantum-well LasersApplied PhysicsQuantum DevicesQuantum Photonic DeviceOptoelectronicsOptical Logic Gate
A two-port circuit model for quantum-well (QW) lasers has been developed from rate equations. With emphasis on the physical principles, the phenomena of the recombination process of electron-hole pairs and the light wave resonance in the active region have been incorporated into this new model. The model has been implemented in a circuit simulator and validated with measured DC and transient laser characteristics. The frequency effects on the modulation properties of QW lasers have been studied and analyzed using a small-signal model. Simulation results show excellent agreement with experimental data.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">></ETX>
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H. C. Casey, M. B. Panish, T. A. Roth · Journal of The Electrochemical Society · 1979 · 1.7K citations
Quantum well lasers--Gain, spectra, dynamics
Yasuhiko Arakawa, A. Yariv · IEEE Journal of Quantum Electronics · 1986 · 573 citations
Quantum-well heterostructure lasers
N. Holonyak, R. M. Kolbas, Russell D. Dupuis et al. · IEEE Journal of Quantum Electronics · 1980 · 541 citations
Wide-bandgap Semiconductor, Engineering, Laser Applications +21