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Controlled Coherent Coupling in a Quantum Dot Molecule Revealed by Ultrafast Four-Wave Mixing Spectroscopy

Authors :
Wigger, Daniel
Schall, Johannes
Deconinck, Marielle
Bart, Nikolai
Mrowiński, Paweł
Krzykowski, Mateusz
Gawarecki, Krzysztof
von Helversen, Martin
Schmidt, Ronny
Bremer, Lucas
Bopp, Frederik
Reuter, Dirk
Wieck, Andreas D.
Rodt, Sven
Renard, Julien
Nogues, Gilles
Ludwig, Arne
Machnikowski, Paweł
Finley, Jonathan J.
Reitzenstein, Stephan
Kasprzak, Jacek
Publication Year :
2023

Abstract

Semiconductor quantum dot molecules are considered as promising candidates for quantum technological applications due to their wide tunability of optical properties and coverage of different energy scales associated with charge and spin physics. While previous works have studied the tunnel-coupling of the different excitonic charge complexes shared by the two quantum dots by conventional optical spectroscopy, we here report on the first demonstration of a coherently controlled inter-dot tunnel-coupling focusing on the quantum coherence of the optically active trion transitions. We employ ultrafast four-wave mixing spectroscopy to resonantly generate a quantum coherence in one trion complex, transfer it to and probe it in another trion configuration. With the help of theoretical modelling on different levels of complexity we give an instructive explanation of the underlying coupling mechanism and dynamical processes.

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2304.10148
Document Type :
Working Paper