Publication | Open Access
Polariton propagation in high quality semiconductors: Microscopic theory and experiment versus additional boundary conditions
45
Citations
35
References
2001
Year
Categoryquantum ElectronicsEngineeringPolariton PropagationMicroscopic TheoryFull ModelSemiconductor NanostructuresSemiconductorsPolariton DynamicOptical PropertiesQuantum MaterialsLinear Exciton-polariton PropagationComputational ElectromagneticsQuantum SciencePhotonicsElectrical EngineeringPhysicsSemiconductor MaterialPolariton OpticsHigh Quality SemiconductorsCondensed Matter PhysicsApplied PhysicsPhononOptoelectronicsTransmitted Electric Field
Linear exciton-polariton propagation in semiconductors is analyzed using a microscopic theory. Numerical results are compared with various approximation schemes based on additional boundary conditions, and with phase-amplitude linear spectroscopy experiments in high-quality GaAs. A simultaneous description of the measured amplitude and phase of the transmitted electric field is only possible with the full model.
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