Phonon-Induced Rabi-Frequency Renormalization of Optically Driven Single InGaAs/GaAs Quantum Dots
A. J. Ramsay, T. M. Godden, S. J. Boyle, Erik M. Gauger, Ahsan Nazir, Brendon W. Lovett, A. M. Fox, M. S. Skolnick
Abstract
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A. J. Ramsay, T. M. Godden, S. J. Boyle, Erik M. Gauger, Ahsan Nazir, Brendon W. Lovett, A. M. Fox, M. S. Skolnick
Abstract
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We study optically driven Rabi rotations of a quantum dot exciton transition between 5 and 50 K, and for pulse areas of up to 14π. In a high driving field regime, the decay of the Rabi rotations is nonmonotonic, and the period decreases with pulse area and increases with temperature. By comparing the experiments to a weak-coupling model of the exciton-phonon interaction, we demonstrate that the observed renormalization of the Rabi frequency is induced by fluctuations in the bath of longitudinal acoustic phonons, an effect that is a phonon analogy of the Lamb shift.
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We study optically driven Rabi rotations of a quantum dot exciton transition between 5 and 50 K, and for pulse areas of up to 14π. In a high driving field regime, the decay of the Rabi rotations is nonmonotonic, and the period decreases with pulse area and increases with temperature. By comparing the experiments to a weak-coupling model of the exciton-phonon interaction, we demonstrate that the observed renormalization of the Rabi frequency is induced by fluctuations in the bath of longitudinal acoustic phonons, an effect that is a phonon analogy of the Lamb shift.
Key concepts: Phonon, Renormalization, Rabi cycle, Physics, Rabi frequency, Exciton, Pulse (music), Coupling (piping)