Photon scattering from a quantum acoustically modulated two-level system

Hahn, T.; Groll, D.; Krenner, H.J.; Kuhn, T.; Machnikowski, P.; Wigger, D.

Research article (journal) | Peer reviewed

Abstract

We calculate the resonance fluorescence signal of a two-level system coupled to a quantized phonon mode. By treating the phonons in the independent boson model and not performing any approximations in their description, we also have access to the state evolution of the phonons. We confirm the validity of our model by simulating the limit of an initial quasi-classical coherent phonon state, which can be compared to experimentally confirmed results in the semiclassical limit. In addition we predict photon scattering spectra in the limit of purely quantum mechanical phonon states by approaching the phononic vacuum. Our method further allows us to simulate the impact of the light scattering process on the phonon state by calculating Wigner functions. We show that the phonon mode is brought into characteristic quantum states by the optical excitation process.

Details about the publication

JournalAVS Quantum Science
Volume4
Article number011403
StatusPublished
Release year2022
Language in which the publication is writtenEnglish
DOI10.1116/5.0077024
Link to the full texthttps://doi.org/10.1116/5.0077024
KeywordsQuantum technology; phononics; quantum emitter

Authors from the University of Münster

Groll, Daniel
Institute of Solid State Theory
Hahn, Thilo
Institute of Solid State Theory
Krenner, Hubert
Professorship of experimental physics with a research focus on solid-state physics (Prof. Krenner)
Kuhn, Tilmann
Professur für Festkörpertheorie (Prof. Kuhn)
Wigger, Daniel
Professur für Festkörpertheorie (Prof. Kuhn)