arXiv Analytics

Sign in

arXiv:1107.1300 [cond-mat.mes-hall]AbstractReferencesReviewsResources

Theoretical basis for the unification of the integer and the fractional quantum Hall effects

Shuming Long, Jianhua Wang, Kang Li, Yi Yuan

Published 2011-07-07Version 1

This paper intends to provide a theoretical basis for the unification of the integer and the fractional quantum Hall effects. Guided by concepts and theories of quantum mechanics and with the solution of the Pauli equation in a magnetic field under the symmetric gauge, wave functions, energy levels of single electrons, and the expectation value of electron's spatial scope are presented. After the quotation of non-interaction dilute gas system, the product of single electron's wave functions is used to construct wave functions of the N electron gas system in magnetic field. Then the expectation value of the system's motion area and the electron's surface density are obtained. In this way, the unification explaination of the integer and the fractional quantum Hall effects is formulated without the help of the concept of fractional charge.

Related articles: Most relevant | Search more
arXiv:cond-mat/9611210 (Published 1996-11-26)
Quantum interference from sums over closed paths for electrons on a three-dimensional lattice in a magnetic field: total energy, magnetic moment, and orbital susceptibility
arXiv:cond-mat/0508278 (Published 2005-08-11, updated 2005-10-21)
Inelastic cotunneling induced decoherence and relaxation, charge and spin currents in an interacting quantum dot under a magnetic field
arXiv:1008.0650 [cond-mat.mes-hall] (Published 2010-08-03)
Fractional quantum Hall effects in bilayers in the presence of inter-layer tunneling and charge imbalance