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Magnetic tuning of the tunnel coupling in an optically active quantum dot molecule

Authors :
Bopp, Frederik
Cullip, Charlotte
Thalacker, Christopher
Lienhart, Michelle
Schall, Johannes
Bart, Nikolai
Sbresny, Friedrich
Boos, Katarina
Rodt, Sven
Reuter, Dirk
Ludwig, Arne
Wieck, Andreas D.
Reitzenstein, Stephan
Troiani, Filippo
Goldoni, Guido
Molinari, Elisa
Müller, Kai
Finley, Jonathan J.
Publication Year :
2023

Abstract

Self-assembled optically active quantum dot molecules (QDMs) allow the creation of protected qubits via singlet-triplet spin states. The qubit energy splitting of these states is defined by the tunnel coupling strength and is, therefore, determined by the potential landscape and thus fixed during growth. Applying an in-plane magnetic field increases the confinement of the hybridized wave functions within the quantum dots, leading to a decrease of the tunnel coupling strength. We achieve a tuning of the coupling strength by $(53.4\pm1.7)$ %. The ability to fine-tune this coupling is essential for quantum network and computing applications that require quantum systems with near identical performance.<br />Comment: Main: 6 pages, 3 figures, Supplemental: 4 pages, 2 figures

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2303.12552
Document Type :
Working Paper