From the 1 of 11 linked papers with an AI index.
11 papers
Theory of phonon-induced spin relaxation in a structured phononic reservoir
Raseeb F. Haroon, PaweÅ Machnikowski
The paper develops a theoretical framework combining Markovian and non‑Markovian open‑system methods with finite‑element simulations to describe electron spin relaxation of a quant…
Topical review on acousto-optical Floquet engineering of single-photon emitters
Daniel Groll, Daniel Wigger, Matthias Weià +6
The combination of solid state single-photon emitters and mechanical excitations on a common platform is a promising approach for the development of hybrid quantum technologies. In…
Higher-harmonic acoustic driving of quantum-dot optical transitions beyond Rabi-frequency resonance
Mateusz Kuniej, PaweÅ Machnikowski, MichaÅ GaweÅczyk
Acoustic control and coupling of quantum systems via phonons can enable miniaturized quantum technology devices for on-chip integration. Optically active quantum dots (QDs) are ess…
Ultra-slow orbital and spin dynamics in an electrically tunable quantum dot molecule
Christopher Thalacker, Michelle Lienhart, Markus Stöcker +13
Tunnel-coupled optically active quantum dot molecules (QDMs), have the potential to operate as spin-photon-interfaces with coupled spins that interact with two different photon fre…
Coupling Quantum Dots to Elastic Waves in a Phononic Crystal Waveguide
Jakub RosiÅski, Jakub Rosiński, MichaÅ GaweÅczyk +6
We present a comprehensive study of quantum dot (QD) coupling to various phononic modes in a phononic waveguide, combining multiband kp and configuration-interaction (CI) QD state…
Fano profile in the resonance fluorescence spectrum of a solid-state quantum emitter coupled to phonons
Rafal Bogaczewicz, Pawel Machnikowski
We present a theory of resonance fluorescence (RF) of a solid-state quantum emitter in the regime of weak optical excitation. The emitter is coupled to phonon modes of the surround…