Changes in the Magnetization of a Double Quantum Dot

From accurate measurements of the energy states in a double quantum dot we deduce the change in magnetization due to single electron tunneling. As a function of magnetic field we observe crossings and anti-crossings in the energy spectrum. The change in magnetization exhibits wiggles as a function o...

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Hauptverfasser: Oosterkamp, T. H, Godijn, S. F, Uilenreef, M. J, Nazarov, Y. V, van der Vaart, N. C, Kouwenhoven, L. P
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Sprache:eng
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Zusammenfassung:From accurate measurements of the energy states in a double quantum dot we deduce the change in magnetization due to single electron tunneling. As a function of magnetic field we observe crossings and anti-crossings in the energy spectrum. The change in magnetization exhibits wiggles as a function of magnetic field with maximum values of a few effective Bohr magnetons in GaAs. These wiggles are a measure of the chaotic motion of the discrete energy states versus magnetic field. Our results show good agreement with a numeric calculation but deviate significantly from semiclassical estimates.
DOI:10.48550/arxiv.cond-mat/9802118