Vanishing hall resistance at high magnetic field in a double-layer two-dimensional electron system

At total Landau level filling factor nu(tot)=1 a double-layer two-dimensional electron system with small interlayer separation supports a collective state possessing spontaneous interlayer phase coherence. This state exhibits the quantized Hall effect when equal electrical currents flow in parallel...

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Veröffentlicht in:Physical review letters 2004-07, Vol.93 (3), p.036801.1-036801.4, Article 036801
Hauptverfasser: KELLOGG, M, EISENSTEIN, J. P, PFEIFFER, L. N, WEST, K. W
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Sprache:eng
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Zusammenfassung:At total Landau level filling factor nu(tot)=1 a double-layer two-dimensional electron system with small interlayer separation supports a collective state possessing spontaneous interlayer phase coherence. This state exhibits the quantized Hall effect when equal electrical currents flow in parallel through the two layers. In contrast, if the currents in the two layers are equal, but oppositely directed, both the longitudinal and Hall resistances of each layer vanish in the low-temperature limit. This finding supports the prediction that the ground state at nu(tot)=1 is an excitonic superfluid.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.93.036801