Impure AdS/CFT
Abstract
We study momentum relaxation due to dilute, weak impurities in a strongly coupled CFT, a truncation of the M2 brane theory. Using the AdS/CFT correspondence, we compute the relaxation time scale as a function of the background magnetic field B and charge density \rho. The theory admits two different types of impurities. We find that for magnetic impurities, momentum relaxation due to the impurity is suppressed by a background B or \rho. For electric impurities, due to an underlying instability in the theory towards an ordered phase, the inverse relaxation time scale increases dramatically near \sqrt{B^2 + \rho^2/\sigma^2_0} \sim 21 T^2. We compute the Nernst response for the impure theory, and comment on similarities with recent measurements in superconductors.
Keywords
Cite
@article{arxiv.0801.1693,
title = {Impure AdS/CFT},
author = {Sean A. Hartnoll and Christopher P. Herzog},
journal= {arXiv preprint arXiv:0801.1693},
year = {2008}
}
Comments
26 pages, 11 figures; v2 ref added