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Influence of correlated disorder potentials on the levitation of current carrying states in the quantum Hall effect

✍ Scribed by Th. Koschny; L. Schweitzer


Publisher
Elsevier Science
Year
2002
Tongue
English
Weight
108 KB
Volume
12
Category
Article
ISSN
1386-9477

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✦ Synopsis


The disorder driven quantum Hall to insulator transition is investigated for a two-dimensional lattice system. We consider a Gaussian correlated random potential, study the behaviour of the current carrying states and trace their energetical position when the disorder strength is increased. Our results qualitatively resemble those obtained previously for exponentially correlated disorder potentials. We ΓΏnd both the downward movement of the anti-Chern states as well as the oating up of the Chern states across the Landau gap which is sometimes masked by the global broadening of the tight binding band.


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The role of bulk and edge currents in a two-dimensional electron gas under the conditions of the integer quantum Hall effect (IQHE) was studied by means of an inductive coupling to Hall bar geometry. From this study we conclude that the extended states at the bulk of the sample below the Fermi energ