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arXiv:1103.0165 [cond-mat.mes-hall]AbstractReferencesReviewsResources

Stationary waves in a superfluid exciton gas in quantum Hall bilayers

A. A. Pikalov, D. V. Fil

Published 2011-03-01, updated 2011-08-29Version 2

Stationary waves in a superfluid magnetoexciton gas in nu = 1 quantum Hall bilayers are considered. The waves are induced by counter-propagating electrical currents that flow in a system with a point obstacle. It is shown that stationary waves can emerge only in imbalanced bilayers in a certain diapason of currents. It is found that the stationary wave pattern is modified qualitatively under a variation of the ratio of the interlayer distance to the magnetic length d/l. The advantages of use graphene-dielectric-graphene sandwiches for the observation of stationary waves are discussed. We determine the range of parameters (the dielectric constant of the layer that separates two graphene layers and the ratio d/l) for which the state with superfluid magnetoexcitons can be realized in such sandwiches. Typical stationary wave patterns are presented as density plots

Comments: 17 pages, 8 figures
Journal: Journal of Physics: Condensed Matter, Volume 23, Issue 26, pp. 265301 (2011)
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