Detuning-Dependent Mollow Triplet of a Coherently-Driven Single Quantum Dot
arXiv:1210.0935 · doi:10.1364/OE.21.004382
Abstract
We present both experimental and theoretical investigations of a laser-driven quantum dot (QD) in the dressed-state regime of resonance fluorescence. We explore the role of phonon scattering and pure dephasing on the detuning-dependence of the Mollow triplet and show that the triplet sidebands may spectrally broaden or narrow with increasing detuning. Based on a polaron master equation approach which includes electron-phonon interaction nonperturbatively, we derive a fully analytical expression for the spectrum. With respect to detuning dependence, we identify a crossover between the regimes of spectral sideband narrowing or broadening. A comparison of the theoretical predictions to detailed experimental studies on the laser detuning-dependence of Mollow triplet resonance emission from single In(Ga)As QDs reveals excellent agreement.
References in corpus (5)
- Resonance fluorescence from a coherently driven semiconductor quantum dot in a cavity
- Quantum dot Rabi rotations beyond the weak exciton-phonon coupling regime
- Resonant nature of phonon-induced damping of Rabi oscillations in quantum dots
- Photon statistics from a resonantly driven quantum dot
- Influence of electron-acoustic phonon scattering on off-resonant cavity feeding within a strongly coupled quantum-dot cavity system
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