Out-of-equilibrium Kondo effect in a mesoscopic device

We study the nonequilibrium regime of the Kondo effect in a quantum dot laterally coupled to a narrow wire. We observe a split Kondo resonance when a finite bias voltage is imposed across the wire. The splitting is attributed to the creation of a double-step Fermi distribution function in the wire....

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Veröffentlicht in:Physical review letters 2002-10, Vol.89 (15), p.156801-156801, Article 156801
Hauptverfasser: De Franceschi, S, Hanson, R, Van Der Wiel, W G, Elzerman, J M, Wijpkema, J J, Fujisawa, T, Tarucha, S, Kouwenhoven, L P
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Sprache:eng
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Zusammenfassung:We study the nonequilibrium regime of the Kondo effect in a quantum dot laterally coupled to a narrow wire. We observe a split Kondo resonance when a finite bias voltage is imposed across the wire. The splitting is attributed to the creation of a double-step Fermi distribution function in the wire. Kondo correlations are strongly suppressed when the voltage across the wire exceeds the Kondo temperature. A perpendicular magnetic field enables us to selectively control the coupling between the dot and the two Fermi seas in the wire. Already at fields of order 0.1 T only the Kondo resonance associated with the strongly coupled reservoir survives.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.89.156801