arXiv:0706.2467 [cond-mat.mes-hall]AbstractReferencesReviewsResources
Geometric scaling in the quantum Hall system
Published 2007-06-17Version 1
The transitions between neighbouring plateaux in the quantum Hall system are observed to follow anti-holomophic scaling with superuniversal scaling exponents, showing that the system contains an emergent sub-modular discrete symmetry and a holomorphic structure at low energies. We identify a class of effective scaling models consistent with this data, which is parametrized by the complex structure of a torus with a special spin structure, in which only the number of fermions (c) remains undetermined. For c = 2 this gives the superuniversal anti-holomorphic scaling potential previously inferred from data, with scaling exponent nu = 2.6, in reasonable agreement with available scaling data.
Comments: 6 pages
Categories: cond-mat.mes-hall
Subjects: 73.20.-r
Keywords: quantum hall system, geometric scaling, emergent sub-modular discrete symmetry, special spin structure, scaling exponent
Tags: journal article
Related articles: Most relevant | Search more
Charge and spin transport in edge channels of a $ν=0$ quantum Hall system on the surface of topological insulators
Quantum Hall system in Tao-Thouless limit
arXiv:cond-mat/9710125 (Published 1997-10-14)
Pairing in the quantum Hall system