Publication | Open Access
Comparative analysis of quantum cascade laser modeling based on density matrices and non-equilibrium Green's functions
54
Citations
23
References
2014
Year
Optical PumpingPhotonicsQuantum ScienceDensity MatricesEngineeringQuantum ComputingPhysicsQuantum TechnologySecond Order CurrentsLaser ScienceQuantum Cascade LaserApplied PhysicsLaser MaterialCategoryquantum ElectronicsμM QuantumGainas/alinas LatticeComparative AnalysisHigh-power Lasers
We study the operation of an 8.5 μm quantum cascade laser based on GaInAs/AlInAs lattice matched to InP using three different simulation models based on density matrix (DM) and non-equilibrium Green's function (NEGF) formulations. The latter advanced scheme serves as a validation for the simpler DM schemes and, at the same time, provides additional insight, such as the temperatures of the sub-band carrier distributions. We find that for the particular quantum cascade laser studied here, the behavior is well described by simple quantum mechanical estimates based on Fermi's golden rule. As a consequence, the DM model, which includes second order currents, agrees well with the NEGF results. Both these simulations are in accordance with previously reported data and a second regrown device.
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