Causal first-order hydrodynamics from kinetic theory and holography
High Energy Physics - Theory
2022-10-12 v1
Abstract
We show how causal relativistic Navier-Stokes equations arise from the relativistic Boltzmann equation: the causality is preserved via a judicious choice of the zero modes of the collision operator. A completely analogous procedure may be used to extract causal hydrodynamics from the fluid-gravity correspondence: again, causality of the hydrodynamic equations is preserved by a suitable choice of zero modes of the corresponding differential operators in the bulk. We give examples of zero modes which give rise to causal hydrodynamic equations for non-conformal fluids with a conserved U(1) global symmetry current.
Keywords
Cite
@article{arxiv.2112.14042,
title = {Causal first-order hydrodynamics from kinetic theory and holography},
author = {Raphael E. Hoult and Pavel Kovtun},
journal= {arXiv preprint arXiv:2112.14042},
year = {2022}
}
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23 pages