Publication | Open Access
Oscillator strength reduction induced by external electric fields in self-assembled quantum dots and rings
66
Citations
34
References
2007
Year
Quantum PhotonicsEngineeringEffective Mass ApproximationNanoelectronicsQuantum DotsSelf-assembled Quantum DotsExternal Electric FieldsExciton Radiative LifetimeMaterials ScienceQuantum ScienceElectrical EngineeringPhotoluminescencePhysicsStationary Electric FieldQuantum DeviceQuantum ChemistryOscillator Strength ReductionNatural SciencesCondensed Matter PhysicsApplied PhysicsQuantum Photonic DeviceOptoelectronics
We have carried out continuous wave and time resolved photoluminescence experiments in self-assembled In(Ga)As quantum dots and quantum rings embedded in field effect structure devices. In both kinds of nanostructures, we find a noticeable increase of the exciton radiative lifetime with the external voltage bias that must be attributed to the field-induced polarizability of the confined electron hole pair. The interplay between the exciton radiative recombination and the electronic carrier tunneling in the presence of a stationary electric field is therefore investigated and compared with a numerical calculation based on the effective mass approximation.
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