English

Impact parameter dependence of anisotropic flow: Bayesian reconstruction in ultracentral nucleus-nucleus collisions

Nuclear Theory 2026-05-26 v2 High Energy Physics - Experiment High Energy Physics - Phenomenology Nuclear Experiment

Abstract

Peculiar phenomena have been observed in analyses of anisotropic flow (vnv_n) fluctuations in ultracentral nucleus-nucleus collisions: The fourth-order cumulant of the elliptic flow (v2v_2) distribution changes sign. In addition, the ATLAS collaboration has shown that cumulants of vnv_n fluctuations of all orders depend significantly on the centrality estimator. We show that these peculiarities are due to the fact that the impact parameter bb always spans a finite range for a fixed value of the centrality estimator. We provide a quantitative determination of this range through a simple Bayesian analysis. We obtain excellent fits of STAR and ATLAS data, with a few parameters, by assuming that the probability distribution of vnv_n solely depends on bb at a given centrality. This probability distribution is almost Gaussian, and its parameters depend smoothly on bb, in a way that is constrained by symmetry and scaling laws. We reconstruct, thus, the impact parameter dependence of the mean elliptic flow in the reaction plane in a model-independent manner, and assess the robustness of the extraction using Monte Carlo simulations of the collisions where the impact parameter is known. We argue that the non-Gaussianity of vnv_n fluctuations gives direct information on the hydrodynamic response to initial anisotropies, ATLAS data being consistent with a smaller response for n=4n=4 than for n=2n=2 and n=3n=3, in agreement with hydrodynamic calculations.

Keywords

Cite

@article{arxiv.2407.17308,
  title  = {Impact parameter dependence of anisotropic flow: Bayesian reconstruction in ultracentral nucleus-nucleus collisions},
  author = {Mubarak Alqahtani and Rajeev S. Bhalerao and Giuliano Giacalone and Andreas Kirchner and Jean-Yves Ollitrault},
  journal= {arXiv preprint arXiv:2407.17308},
  year   = {2026}
}

Comments

Published version. 18 pages, 8 figures