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Carrier dynamics in isoelectronic ZnSe1−xOx semiconductors
22
Citations
7
References
2010
Year
SemiconductorsIi-vi SemiconductorElectrical EngineeringElectronic DevicesOptical MaterialsEngineeringPhysicsPhotoluminescenceOptoelectronic MaterialsApplied PhysicsIsoelectronic Znse1−xox SemiconductorsIsoelectronic Znse1−xoxComplex Decay TracesOptoelectronic DevicesCharge Carrier TransportCompound SemiconductorStretching Exponent βSemiconductor Nanostructures
This study explores the effects of both Oxygen and temperature on the carrier dynamics of isoelectronic ZnSe1−xOx (x=0.027 and 0.053) semiconductors using photoluminescence (PL) and time-resolved PL spectroscopy. We find that the Kohlrausch law is highly consistent with the complex decay traces induced by isoelectronic O traps, and the mechanism of carrier recombination undergoes a complicated change from trapped to free excitons with the increase in temperature. Complex recombination processes are clarified using the relaxation model based on various decay channels. These findings are consistent with the initial fall in the stretching exponent β followed by its monotonic increase with increasing temperature.
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