English

Out-of-bounds hydrodynamics in holographic anisotropic Dirac semimetals

High Energy Physics - Theory 2025-07-21 v1 Other Condensed Matter

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 η\eta. By explicitly breaking rotational symmetry we find a new instance of violation of the KSS-bound for the η/s\eta/s ratio in the quantum critical region, as well as a monotone dependence on temperature in the T0T\to 0 regime fixed by a Lifshitz dynamical critical exponent. We find that the Lifshitz critical exponent in the anisotropic direction is approximately equal to 22 for our choice of backreaction parameters. We find explicit T=0T=0 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.

Keywords

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}
}