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Hydrodynamics of nuclear matter in the chiral limit

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arxiv hep-ph/9912267 v2 pith:N562KICK submitted 1999-12-08 hep-ph cond-mat.softnlin.CDnucl-thphysics.flu-dyn

Hydrodynamics of nuclear matter in the chiral limit

classification hep-ph cond-mat.softnlin.CDnucl-thphysics.flu-dyn
keywords equationsorderchiraldescribingdynamicshydrodynamichydrodynamicslimit
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Using the Poisson bracket method, we construct the hydrodynamics of nuclear matter in the chiral limit, which describes the dynamics of all low-energy degrees of freedom, including the fluid-dynamical and pionic ones. The hydrodynamic equations contain, beside five Euler equations of relativistic fluid dynamics, Nf^2-1 second order equations describing propagating pions and Nf^2-1 first order equations describing the advection of the baryonic vector isospin charges. We present hydrodynamic arguments showing that the pion velocity vanishes at the second order phase transition at Nf=2.

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  1. Flavour current correlators and the non-Abelian hydrodynamic approximation: the charged sector

    hep-th 2026-07 conditional novelty 6.0

    Isospin-imbalanced strongly coupled dense matter is shown, via holography, to obey non-Abelian hydrodynamic predictions for current correlators up to the chemical-potential scale, beyond the standard ω,k ≪ T regime.