arXiv · 1708.02759
Out-of-bounds hydrodynamics in anisotropic Dirac fluids
Abstract
We study the hydrodynamic behavior in two-dimensional, interacting electronic systems with merging Dirac points at charge neutrality. The dispersion along one crystallographic direction is Dirac-like, while it is Newtonian-like in the orthogonal direction. As a result, the electrical conductivity is metallic in one and insulating in the other direction. One element of the shear viscosity tensor violates the famous lower bound for the shear viscosity to entropy density ratio,an effect that can be probed via anisotropic thermal Hagen- Poiseuille flow.
Explore related subjects
Keep this discovery
Julia M. Link, Boris N. Narozhny, Egor I. Kiselev, Jörg Schmalian. 2017-08-09. Out-of-bounds hydrodynamics in anisotropic Dirac fluids. https://doi.org/10.1103/physrevlett.120.196801
Cite the original work for its findings. Save a collection to share your selection of sources.