paper

Evidence for the collective nature of radial flow in Pb+Pb collisions with the ATLAS detector

arXiv:2503.24125 · doi:10.1103/ldcn-r2lq

Abstract

Anisotropic flow and radial flow are two key probes of the expansion dynamics and properties of the quark-gluon plasma (QGP). While anisotropic flow has been extensively studied, radial flow, which governs the system's radial expansion, has received less attention. Notably, experimental evidence for the global and collective nature of radial flow has been lacking. This Letter presents the first measurement of transverse momentum () dependence of radial flow fluctuations () over GeV, using a two-particle correlation method in Pb+Pb collisions at TeV. The data reveal three key features supporting the collective nature of radial flow: long-range correlation in pseudorapidity, factorization in , and centrality-independent shape in . The comparison with a hydrodynamic model demonstrates the sensitivity of to bulk viscosity, a crucial transport property of the QGP. These findings establish a new, powerful tool for probing collective dynamics and properties of the QGP.

36 pages in total, author list starting page 19, 11 figures, 0 tables, published on Phys. Rev. Lett. All figures including auxiliary figures are available at https://atlas.web.cern.ch/Atlas/GROUPS/PHYSICS/PAPERS/HION-2024-06/

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Evidence for the collective nature of radial flow in Pb+Pb collisions with the ATLAS detector · wovepaper