Spin-incoherent transport in quantum wires

When a quantum wire is weakly confined, a conductance plateau appears at e;{2}/h with decreasing carrier density in zero magnetic field accompanied by a gradual suppression of the 2e;{2}/h plateau. Applying an in-plane magnetic field B_{ parallel} does not alter the value of this quantization; howev...

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Veröffentlicht in:Physical review letters 2008-07, Vol.101 (3), p.036801-036801, Article 036801
Hauptverfasser: Hew, W K, Thomas, K J, Pepper, M, Farrer, I, Anderson, D, Jones, G A C, Ritchie, D A
Format: Artikel
Sprache:eng
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Zusammenfassung:When a quantum wire is weakly confined, a conductance plateau appears at e;{2}/h with decreasing carrier density in zero magnetic field accompanied by a gradual suppression of the 2e;{2}/h plateau. Applying an in-plane magnetic field B_{ parallel} does not alter the value of this quantization; however, the e;{2}/h plateau weakens with increasing B_{ parallel} up to 9 T, and then strengthens on further increasing B_{ parallel}, which also restores the 2e;{2}/h plateau. Our results are consistent with spin-incoherent transport in a one-dimensional wire.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.101.036801