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Adiabatic hydrodynamization in rapidly-expanding quark-gluon plasma

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arxiv 1910.00021 v2 pith:4CYR3QCA submitted 2019-09-30 nucl-th hep-thphysics.flu-dyn

classification nucl-thhep-thphysics.flu-dyn
keywords pre-hydrodynamicmodesplasmatimesadiabaticcollisioncollisionsearly
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We propose a new scenario characterizing the transition of the quark-gluon plasma (QGP) produced in heavy-ion collisions from a highly non-equilibrium state at early times toward a fluid described by hydrodynamics at late times. We develop an analogy to the evolution of a quantum mechanical system that is governed by the instantaneous ground states. In the simplest case, these slow modes are "pre-hydrodynamic" in the sense that they are initially distinct from, but evolve continuously into, hydrodynamic modes. For a class of collision integrals, the pre-hydrodynamic mode represents the angular distribution (in momentum space) of those gluons that carry most of the energy. We illustrate this scenario using a kinetic description of weakly-coupled Bjorken expanding plasma. Rapid longitudinal expansion drives a reduction in the degrees of freedom at early times. In the relaxation time approximation for the collision integral, we show quantitatively that the full kinetic theory evolution is dominated by the pre-hydrodynamic mode. We elaborate on the criterion for the dominance of pre-hydrodynamic slow modes and speculate that adiabatic hydrodynamization may describe the pre-equilibrium behavior of the QGP produced in heavy-ion collisions.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Attractors Without Scaling: Adiabatic Hydrodynamization With and Without Inelastic Scattering

    hep-ph 2025-07 conditional novelty 7.0 of 10

    Including inelastic scattering in a simplified gluon kinetic theory speeds up hydrodynamization, and attractors appear through gapped eigenstates of an effective Hamiltonian even without pre-thermal scaling.

  2. Emergence, Formation and Dynamics of Hot QCD Matter

    hep-ph 2024-12 conditional novelty 7.0 of 10

    A doctoral thesis deriving the QCD correlation functions that control quarkonium dissociation and recombination in the quark-gluon plasma, and showing that hydrodynamization in a simplified QCD kinetic theory matches ...

  3. Attractodynamics in 0+1D

    hep-ph 2026-07 conditional novelty 6.0 of 10

    Attractodynamics constructs a macroscopic closure around a nonthermal attractor; in the 0+1D BSY kinetic model, ideal and viscous truncations track the full kinetic evolution, with the viscous extension improving agre...

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