Directed transport in quantum Hall bilayers

被引:0
|
作者
R. Khomeriki
L. Tkeshelashvili
T. Buishvili
Sh. Revishvili
机构
[1] Tbilisi State University,Department of Natural Sciences
[2] Institut für Theoretische Festkörperphysik,undefined
[3] Universität Karlsruhe,undefined
[4] Institute of Physics,undefined
关键词
73.43.Lp Collective excitations; 05.45.Yv Solitons ;
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学科分类号
摘要
The pseudo-spin model for a double layer quantum Hall system with the total landau level filling factor ν=1 is discussed. In contrast to the “traditional” model where the interlayer voltage enters as a static magnetic field along pseudo-spin hard axis, taking into account the realistic experimental situation, in our model we interpret the influence of applied voltage as a source of additional relaxation process in the double layer system. We show that the Landau-Lifshitz equation for the considered pseudo-magnetic system well describes existing experimental data and reduces to the dc driven and damped sine-Gordon equation. As a result, the mentioned model predicts novel directed intra-layer transport phenomenon in the system. In particular, unidirectional intra-layer energy transport can be realized due to the motion of topological kinks induced by applied voltage. Experimentally this should be manifested as counter-propagating intra-layer inhomogeneous charge currents proportional to the interlayer voltage and total topological charge of the pseudo-spin system.
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页码:421 / 424
页数:3
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