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Direct Evidence of Interlevel Exciton Transitions Mediated by Single Phonons in a Semiconductor Quantum Dot Using Resonance Fluorescence Spectroscopy
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Citations
23
References
2009
Year
SemiconductorsPhotoluminescenceEngineeringQuantum ComputingPhysicsNatural SciencesQuantum DeviceApplied PhysicsPhononSingle PhononsAcoustic PhononsExcitation Energy TransferDirect EvidenceSemiconductor Quantum DotQuantum ChemistryOptoelectronicsExciton Quantum StateSemiconductor Nanostructures
Using resonance fluorescence, we investigate how acoustic phonons mediate couplings between multiple electronic levels in a semiconductor quantum dot. We show the first direct evidence of population up-conversion in a single quantum dot, which we attribute to absorption of single acoustic phonons. Moreover, through a rate equation analysis, we find that below 20 K such single-phonon mediated couplings between the exciton ground state and the first excited state are primarily responsible for decoherence of the exciton quantum state.
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