Quantum Hall conductances and localization in a magnetic field

I. Dana and J. Zak
Phys. Rev. B 32, 3612 – Published 15 September 1985
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Abstract

The relation between extended and localized states in a magnetic field is investigated. A general form for the magnetic Bloch states in an arbitrary rational field (with p/q flux quanta through a unit cell, p and q relatively prime integers) is written, and their basic properties are studied. It is shown that the completeness properties of lattices of orbitals relative to a set of N magnetic subbands are connected with the value of the total quantum Hall conductance σN (in units of e2/h) carried by these subbands. In particular, lattices of orbitals can reproduce continuously all the magnetic Bloch states of N subbands if and only if σN=0, a case which may occur only for N multiples of q. This is also the only case where localized magnetic Wannier functions for the subbands can be constructed. In the light of these results a discussion is given of the almost-free-electron limit and the tight-binding approach of Harper’s equation.

  • Received 13 March 1985

DOI:https://doi.org/10.1103/PhysRevB.32.3612

©1985 American Physical Society

Authors & Affiliations

I. Dana

  • Department of Chemistry and the Laboratory for Research in the Structure of Matter, University of Pennsylvania, Philadelphia, Pennsylvania, 19104

J. Zak

  • Department of Physics, TechnionIsrael Institute of Technology, 32000 Haifa, Israel

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Issue

Vol. 32, Iss. 6 — 15 September 1985

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