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Universality in Quantum Hall Systems: Coset Construction of Incompressible States

Incompressible Quantum Hall fluids (QHF's) can be described in the scaling limit by three-dimensional topological field theories. Thanks to the correspondence between three-dimensional topological field theories and two dimensional chiral conformal field theories (CCFT's), we propose to st...

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Detalles Bibliográficos
Autores principales: Frohlich, Jurg, Pedrini, Bill, Schweigert, Christoph, Walcher, Johannes
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:https://dx.doi.org/10.1023/A:1010389232079
http://cds.cern.ch/record/427820
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author Frohlich, Jurg
Pedrini, Bill
Schweigert, Christoph
Walcher, Johannes
author_facet Frohlich, Jurg
Pedrini, Bill
Schweigert, Christoph
Walcher, Johannes
author_sort Frohlich, Jurg
collection CERN
description Incompressible Quantum Hall fluids (QHF's) can be described in the scaling limit by three-dimensional topological field theories. Thanks to the correspondence between three-dimensional topological field theories and two dimensional chiral conformal field theories (CCFT's), we propose to study QHF's from the point of view of CCFT's. We derive consistency conditions and stability criteria for those CCFT's that can be expected to describe a QHF. A general algorithm is presented which uses simple currents to construct interesting examples of such CCFT's. It generalizes the description of QHF's in terms of Quantum Hall lattices. Explicit examples, based on the coset construction, provide candidates for the description of Quantum Hall fluids with Hall conductivity s_H=1/2 e^2/h, 1/4 e^2/h, 3/5 e^2/h, e^2/h,...
id cern-427820
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2000
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spelling cern-4278202021-10-22T05:47:27Zdoi:10.1023/A:1010389232079http://cds.cern.ch/record/427820engFrohlich, JurgPedrini, BillSchweigert, ChristophWalcher, JohannesUniversality in Quantum Hall Systems: Coset Construction of Incompressible StatesCondensed MatterIncompressible Quantum Hall fluids (QHF's) can be described in the scaling limit by three-dimensional topological field theories. Thanks to the correspondence between three-dimensional topological field theories and two dimensional chiral conformal field theories (CCFT's), we propose to study QHF's from the point of view of CCFT's. We derive consistency conditions and stability criteria for those CCFT's that can be expected to describe a QHF. A general algorithm is presented which uses simple currents to construct interesting examples of such CCFT's. It generalizes the description of QHF's in terms of Quantum Hall lattices. Explicit examples, based on the coset construction, provide candidates for the description of Quantum Hall fluids with Hall conductivity s_H=1/2 e^2/h, 1/4 e^2/h, 3/5 e^2/h, e^2/h,...cond-mat/0002330ETH-TH-00-3PAR-LPTHE-00-07ETH-TH-2000-3ETH-TH-00-3PAR-LPTHE-2000-07oai:cds.cern.ch:4278202000-02-21
spellingShingle Condensed Matter
Frohlich, Jurg
Pedrini, Bill
Schweigert, Christoph
Walcher, Johannes
Universality in Quantum Hall Systems: Coset Construction of Incompressible States
title Universality in Quantum Hall Systems: Coset Construction of Incompressible States
title_full Universality in Quantum Hall Systems: Coset Construction of Incompressible States
title_fullStr Universality in Quantum Hall Systems: Coset Construction of Incompressible States
title_full_unstemmed Universality in Quantum Hall Systems: Coset Construction of Incompressible States
title_short Universality in Quantum Hall Systems: Coset Construction of Incompressible States
title_sort universality in quantum hall systems: coset construction of incompressible states
topic Condensed Matter
url https://dx.doi.org/10.1023/A:1010389232079
http://cds.cern.ch/record/427820
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AT pedrinibill universalityinquantumhallsystemscosetconstructionofincompressiblestates
AT schweigertchristoph universalityinquantumhallsystemscosetconstructionofincompressiblestates
AT walcherjohannes universalityinquantumhallsystemscosetconstructionofincompressiblestates