English

The collectivity of transverse momentum fluctuations

Nuclear Theory 2026-04-22 v2 High Energy Physics - Phenomenology Nuclear Experiment

Abstract

We study the observable v0(pT)v_0(p_T), which quantifies the relative change of pTp_T spectra induced by event-by-event density fluctuations in the medium created in heavy-ion collisions. This quantity provides a direct measure of radial flow and serves as a probe of collectivity, complementing anisotropic flow coefficients. Using hydrodynamic model calculations, we predict the behavior of v0(pT)v_0(p_T) and show that the scaled quantity v0(pT)/v0v_0(p_T)/v_0 exhibits very little dependence on centrality and transport coefficients. We further find that the apparent influence of transport coefficients-particularly bulk viscosity- on v0(pT)v_0(p_T) largely originates from modifications of the event-averaged mean transverse momentum, pT\langle p_T \rangle. By expressing v0(pT)/v0v_0(p_T)/v_0 as a function of pT/pTp_T/\langle p_T \rangle, the genuine sensitivity of v0(pT)v_0(p_T) to transport coefficients can be isolated. Moreover, since v0(pT)v_0(p_T) is the pTp_T-differential measure of event-by-event [pT][p_T] fluctuations, it naturally explains the observed pTp_T-cut dependence of σpT\sigma_{p_T} measured by ATLAS collaboration.

Keywords

Cite

@article{arxiv.2601.09890,
  title  = {The collectivity of transverse momentum fluctuations},
  author = {Tribhuban Parida and Rupam Samanta and Jean-Yves Ollitrault},
  journal= {arXiv preprint arXiv:2601.09890},
  year   = {2026}
}

Comments

4 pages, 3 figures, proceedings for Quark Matter 2025 conference, with Acknowledgement