Signatures of Hyperfine, Spin-Orbit, and Decoherence Effects in a Pauli Spin Blockade

We detect in real time interdot tunneling events in a weakly coupled two-electron double quantum dot in GaAs. At finite magnetic fields, we observe two characteristic tunneling times T_{d} and T_{b}, belonging to, respectively, a direct and a blocked (spin-flip-assisted) tunneling. The latter corres...

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Veröffentlicht in:Physical review letters 2016-11, Vol.117 (20), p.206802-206802, Article 206802
Hauptverfasser: Fujita, T, Stano, P, Allison, G, Morimoto, K, Sato, Y, Larsson, M, Park, J-H, Ludwig, A, Wieck, A D, Oiwa, A, Tarucha, S
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Sprache:eng
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Zusammenfassung:We detect in real time interdot tunneling events in a weakly coupled two-electron double quantum dot in GaAs. At finite magnetic fields, we observe two characteristic tunneling times T_{d} and T_{b}, belonging to, respectively, a direct and a blocked (spin-flip-assisted) tunneling. The latter corresponds to the lifting of a Pauli spin blockade, and the tunneling times ratio η=T_{b}/T_{d} characterizes the blockade efficiency. We find pronounced changes in the behavior of η upon increasing the magnetic field, with η increasing, saturating, and increasing again. We explain this behavior as due to the crossover of the dominant blockade-lifting mechanism from the hyperfine to spin-orbit interactions and due to a change in the contribution of the charge decoherence.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.117.206802