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A fully dynamical simulation of central nuclear collisions

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abstract

We present a fully dynamical simulation of central nuclear collisions around mid-rapidity at LHC energies. Unlike previous treatments, we simulate all phases of the collision, including the equilibration of the system. For the simulation, we use numerical relativity solutions to AdS/CFT for the pre-equilibrium stage, viscous hydrodynamics for the plasma equilibrium stage and kinetic theory for the low density hadronic stage. Our pre-equilibrium stage provides initial conditions for hydrodynamics, resulting in sizable radial flow. The resulting light particle spectra reproduce the measurements from the ALICE experiment at all transverse momenta.

fields

hep-ph 1

years

2025 1

verdicts

UNVERDICTED 1

representative citing papers

(3+1)D event-by-event pre-equilibrium dynamics in heavy-ion collisions

hep-ph · 2025-12-08 · unverdicted · novelty 7.0

Extension of KoMPoST to (3+1)D non-boost-invariant pre-equilibrium dynamics via kinetic theory response functions, chained into a full McDIPPER+KoMPoST-3D+CLVisc+SMASH simulation chain to study sensitivity of longitudinal flow to hydrodynamic start time.

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  • (3+1)D event-by-event pre-equilibrium dynamics in heavy-ion collisions hep-ph · 2025-12-08 · unverdicted · none · ref 36 · internal anchor

    Extension of KoMPoST to (3+1)D non-boost-invariant pre-equilibrium dynamics via kinetic theory response functions, chained into a full McDIPPER+KoMPoST-3D+CLVisc+SMASH simulation chain to study sensitivity of longitudinal flow to hydrodynamic start time.