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First order and stable relativistic dissipative hydrodynamics

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abstract

Relativistic thermodynamics is derived from kinetic equilibrium in a general frame. Based on a novel interpretation of Lagrange multipliers in the equilibrium state we obtain a generic stable but first order relativistic dissipative hydrodynamics. Although this was believed to be impossible, we circumvent this difficulty by a specific handling of the heat flow.

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representative citing papers

Thermal dilepton production within conformal viscous Gubser flow

hep-ph · 2025-06-02 · conditional · novelty 5.0

Thermal dilepton yields and effective temperatures are computed for conformal viscous Gubser flow, showing larger yields for lower q (larger systems) and higher effective temperatures for smaller systems.

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  • Thermal dilepton production within conformal viscous Gubser flow hep-ph · 2025-06-02 · conditional · none · ref 35 · internal anchor

    Thermal dilepton yields and effective temperatures are computed for conformal viscous Gubser flow, showing larger yields for lower q (larger systems) and higher effective temperatures for smaller systems.