Pauli Spin Blockade and Influence of Hyperfine Interaction in Vertical Quantum Dot Molecule with Six-Electrons

We investigate Pauli spin blockade and the influence of hyperfine interaction for a system of six-electrons in a device composed of two weakly coupled vertical quantum dots. As a consequence of a large built-in offset energy between the dots, the relevant charge configurations consist of one (zero)...

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Veröffentlicht in:Journal of the Physical Society of Japan 2011-02, Vol.80 (2), p.023701-023701-4
Hauptverfasser: Amaha, Shinichi, Kodera, Tetsuo, Hatano, Tsuyoshi, Ono, Keiji, Tokura, Yasuhiro, Tarucha, Seigo, Gupta, James A, Austing, David Guy
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Sprache:eng
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Zusammenfassung:We investigate Pauli spin blockade and the influence of hyperfine interaction for a system of six-electrons in a device composed of two weakly coupled vertical quantum dots. As a consequence of a large built-in offset energy between the dots, the relevant charge configurations consist of one (zero) and five (six) electrons on the upstream dot and downstream dot respectively. On sweeping the out-of-dot-plane magnetic field up and down, abrupt steps and hysteresis in the leakage current are observed in the Pauli spin blockade region that evolve systematically with bias. We propose a model to explain our observations in terms of hyperfine induced singlet--triplet mixing.
ISSN:0031-9015
1347-4073
DOI:10.1143/JPSJ.80.023701