English

Anomalous scalings of the cuprate strange metals from nonlinear electrodynamics

High Energy Physics - Theory 2019-04-03 v2 Strongly Correlated Electrons General Relativity and Quantum Cosmology

Abstract

We examine transport in a holographic model which describes, through a nonlinear gauge field sector, generic nonlinear interactions between the charge carriers. Scaling exponents are introduced by using geometries which are nonrelativistic and hyperscaling-violating in the infrared. In the dilute charge limit in which the gauge field sector does not backreact on the geometry, a particularly simple nonlinear theory reproduces the anomalous temperature dependence of the resistivity and Hall angle of the cuprate strange metals, RTR \sim T and cotΘHT2\cot\Theta_H \sim T^2 while also allowing for a linear entropy STS \sim T, and predicts that the magnetoresistance for small values of the magnetic field hh should scale as h2T4\sim h^2 T^{-4}. Our study lends evidence to the idea that the strange metal behavior of the cuprates relies crucially on the linear temperature dependence of the entropy.

Keywords

Cite

@article{arxiv.1812.01040,
  title  = {Anomalous scalings of the cuprate strange metals from nonlinear electrodynamics},
  author = {Sera Cremonini and Anthony Hoover and Li Li and Steven Waskie},
  journal= {arXiv preprint arXiv:1812.01040},
  year   = {2019}
}

Comments

v2: revised version, 6 pages+supplemental material, to appear as a Rapid Communication in PRD