Resonance-fluorescence spectral dynamics of an acoustically modulated quantum dot

Wigger, D.; Weiß, M.; Lienhart, M.; Müller, K.; Finley, J.J.; Kuhn. T.; Krenner, H.J.; Machnikowski, P.

Research article (journal) | Peer reviewed

Abstract

Quantum technologies that rely on photonic qubits require a precise controllability of their properties. For this purpose hybrid approaches are particularly attractive because they offer a large flexibility to address different aspects of the photonic degrees of freedom. When combining photonics with other quantum platforms like phonons, quantum transducers have to be realized that convert between the mechanical and optical domain. Here, we realize this interface between phonons in the form of surface acoustic waves (SAWs) and single photons, mediated by a single semiconductor quantum dot exciton. In this combined theoretical and experimental study, we show that the different sidebands exhibit characteristic blinking dynamics that can be controlled by detuning the laser from the exciton transition. By developing analytical approximations we gain a better understanding of the involved internal dynamics. Our specific SAW approach allows us to reach the ideal frequency range of around 1 GHz that enables simultaneous temporal and spectral phonon sideband resolution close to the combined fundamental time-bandwidth limit.

Details about the publication

JournalPhysical Review Research (Phys. rev. res.)
Volume3
Article number033197
StatusPublished
Release year2021
Language in which the publication is writtenEnglish
DOI10.1103/PhysRevResearch.3.033197
Link to the full texthttps://link.aps.org/doi/10.1103/PhysRevResearch.3.033197
KeywordsSurface acoustic waves, Quantum dots

Authors from the University of Münster

Krenner, Hubert
Professorship of experimental physics with a research focus on solid-state physics (Prof. Krenner)
Kuhn, Tilmann
Professur für Festkörpertheorie (Prof. Kuhn)
Weiß, Matthias
Institute of Physics (PI)
Wigger, Daniel
Professur für Festkörpertheorie (Prof. Kuhn)