English

Transport in Chern-Simons-Matter Theories

High Energy Physics - Theory 2016-08-24 v2 Strongly Correlated Electrons

Abstract

The frequency-dependent longitudinal and Hall conductivities --- σxx\sigma_{xx} and σxy\sigma_{xy} --- are dimensionless functions of ω/T\omega/T in 2+1 dimensional CFTs at nonzero temperature. These functions characterize the spectrum of charged excitations of the theory and are basic experimental observables. We compute these conductivities for large NN Chern-Simons theory with fermion matter. The computation is exact in the 't Hooft coupling λ\lambda at N=N = \infty. We describe various physical features of the conductivity, including an explicit relation between the weight of the delta function at ω=0\omega = 0 in σxx\sigma_{xx} and the existence of infinitely many higher spin conserved currents in the theory. We also compute the conductivities perturbatively in Chern-Simons theory with scalar matter and show that the resulting functions of ω/T\omega/T agree with the strong coupling fermionic result. This provides a new test of the conjectured 3d bosonization duality. In matching the Hall conductivities we resolve an outstanding puzzle by carefully treating an extra anomaly that arises in the regularization scheme used.

Keywords

Cite

@article{arxiv.1605.01122,
  title  = {Transport in Chern-Simons-Matter Theories},
  author = {Guy Gur-Ari and Sean A. Hartnoll and Raghu Mahajan},
  journal= {arXiv preprint arXiv:1605.01122},
  year   = {2016}
}

Comments

27 pages + appendices