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arXiv:2605.04558·v2·Nuclear Theory

Effects of event-by-event hydrodynamic fluctuations on bottomonium dynamics in Pb--Pb collisions at TeV

Jiamin Liu🇨🇳 · Yiyun Tang🇨🇳 · Linyuan Wei🇨🇳 · Baoyi Chen🇨🇳

Abstract

We investigate the effects of event-by-event hydrodynamic fluctuations on bottomonium nuclear modification factors and elliptic flow in Pb--Pb collisions at TeV. The internal evolution of the heavy quarkonium is described by a time-dependent Schrödinger equation with a temperature-dependent complex heavy-quark potential, while the hot QCD medium evolution is simulated using the iEBE-VISHNU event-by-event viscous hydrodynamic framework. By incorporating both fluctuating and smooth hot media, we find that the bottomonium nuclear modification factor is only marginally affected by event-by-event fluctuations, whereas the elliptic flow is systematically enhanced, with the enhancement growing from the tightly bound to the more weakly bound and . This enhancement arises from the more pronounced participant-plane anisotropy of the fluctuating medium relative to the smooth optical-Glauber reference geometry. These results indicate that a smooth hydrodynamic background reproduces the bottomonium but underestimates its , so that the bottomonium retains a discernible imprint of event-by-event medium fluctuations.

Comments: 8 pages, 5 figures