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arXiv:2312.04274·v2·High Energy Physics — Phenomenology

Establishing the Range of Applicability of Hydrodynamics in High-Energy Collisions

Clemens Werthmann🇩🇪 · Victor E. Ambruş🇷🇴 · Sören Schlichting🇩🇪

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Abstract

We simulate the space-time dynamics of high-energy collisions based on a microscopic kinetic description, in order to determine the range of applicability of an effective description in relativistic viscous hydrodynamics. We find that hydrodynamics provides a quantitatively accurate description of collective flow when the average inverse Reynolds number is sufficiently small and the early pre-equilibrium stage is properly accounted for. By determining the breakdown of hydrodynamics as a function of system size and energy, we find that it is quantitatively accurate in central lead-lead collisions at LHC energies, but should not be used in typical proton-lead or proton-proton collisions, where the development of collective flow cannot accurately be described within hydrodynamics.

Comments: 4 pages, 2 figures. Contribution to the Quark Matter 2023 conference proceedings. v2: Minor changes. Identical to accepted version

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