Out-of-bounds hydrodynamics in holographic anisotropic Dirac semimetals
Abstract
We present a version of a strongly correlated 2+1-dimensional condensed matter system that features a thermal phase transition between a semimetal and an insulator through a semi-Dirac quantum critical region using AdS/CFT holography. We introduce backreaction into the bulk equations of motion to measure transport coefficients in the boundary; specifically the shear viscosity . By explicitly breaking rotational symmetry we find a new instance of violation of the KSS-bound for the ratio in the quantum critical region, as well as a monotone dependence on temperature in the regime fixed by a Lifshitz dynamical critical exponent. We find that the Lifshitz critical exponent in the anisotropic direction is approximately equal to for our choice of backreaction parameters. We find explicit solutions separated by a quantum critical point in parameter space, showing that the thermal critical phase found in previous work comes from a quantum phase transition at zero temperature.
Cite
@article{arxiv.2507.13497,
title = {Out-of-bounds hydrodynamics in holographic anisotropic Dirac semimetals},
author = {Sebastián Bahamondes and Ignacio Salazar Landea and Rodrigo Soto-Garrido},
journal= {arXiv preprint arXiv:2507.13497},
year = {2025}
}