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Simple holographic model of nonlinear conductivity

Authors :
Horowitz, GT
Iqbal, N
Santos, JE
Pinto Da Silva e Conceicao Santos, Jorge [0000-0002-4199-4190]
Apollo - University of Cambridge Repository
Publication Year :
2018
Publisher :
Apollo - University of Cambridge Repository, 2018.

Abstract

We present a simple analytic gravitational solution which describes the holographic dual of a 2+1-dimensional conductor which goes beyond the usual linear response. In particular it includes Joule heating. We find that the nonlinear frequency-dependent conductivity is a constant. Surprisingly, the pressure remains isotropic. We also apply an electric field to a holographic insulator and show that there is a maximum electric field below which it can remain an insulator. Above this critical value, we argue that it becomes a conductor due to pair creation of charged particles. Finally, we study 1+1 and 3+1 dimensional conductors at the nonlinear level; here exact solutions are not available and a perturbative analysis shows that the current becomes time dependent, but in a way that is captured by a time-dependent effective temperature.

Subjects

Subjects :
hep-th
gr-qc

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....b9da0d91b0153bbeb951e4ce6a780a33
Full Text :
https://doi.org/10.17863/cam.17263