Ohm's Law at strong coupling: S duality and the cyclotron resonance
High Energy Physics - Theory
2008-11-26 v3 Strongly Correlated Electrons
Abstract
We calculate the electrical and thermal conductivities and the thermoelectric coefficient of a class of strongly interacting 2+1 dimensional conformal field theories with anti-de Sitter space duals. We obtain these transport coefficients as a function of charge density, background magnetic field, temperature and frequency. We show that the thermal conductivity and thermoelectric coefficient are determined by the electrical conductivity alone. At small frequency, in the hydrodynamic limit, we are able to provide a number of analytic formulae for the electrical conductivity. A dominant feature of the conductivity is the presence of a cyclotron pole. We show how bulk electromagnetic duality acts on the transport coefficients.
Cite
@article{arxiv.0706.3228,
title = {Ohm's Law at strong coupling: S duality and the cyclotron resonance},
author = {Sean A. Hartnoll and Christopher P. Herzog},
journal= {arXiv preprint arXiv:0706.3228},
year = {2008}
}