Fundamental relation between longitudinal and transverse conductivities in the quantum Hall system
arXiv:0907.5253 · doi:10.1088/0953-8984/21/34/345803
Abstract
We investigate the relation between the diagonal () and off-diagonal () components of the conductivity tensor in the quantum Hall system. We calculate the conductivity components for a short-range impurity potential using the linear response theory, employing an approximation that simply replaces the self-energy by a constant value with the scattering time. The approximation is equivalent to assuming that the broadening of a Landau level due to disorder is represented by a Lorentzian with the width . Analytic formulas are obtained for both and within the framework of this simple approximation at low temperatures. By examining the leading terms in and , we find a proportional relation between and . The relation, after slight modification to account for the long-range nature of the impurity potential, is shown to be in quantitative agreement with experimental results obtained in the GaAs/AlGaAs two-dimensional electron system at the low magnetic-field regime where spin splitting is negligibly small.
21 pages, 8 figures, accepted for publication in J. Phys.: Condens. Matter