Second-Order Hydrodynamics in Next-to-Leading-Order QCD

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Abstract

We compute the hydrodynamic relaxation times τπ and τj for hot QCD at next-to-leading order in the coupling with kinetic theory. We show that certain dimensionless ratios of second-order to first-order transport coefficients obey bounds which apply whenever a kinetic theory description is possible; the computed values lie somewhat above these bounds. Strongly coupled theories with holographic duals strongly violate these bounds, highlighting their distance from a quasiparticle description.

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Ghiglieri, J., Moore, G. D., & Teaney, D. (2018). Second-Order Hydrodynamics in Next-to-Leading-Order QCD. Physical Review Letters, 121(5). https://doi.org/10.1103/PhysRevLett.121.052302

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