paper

The shape of differential radial flow , not its zero-crossing, carries physical information

arXiv:2504.20008 · doi:10.1007/s41365-026-01998-z

Abstract

Radial flow, a key collective phenomenon in heavy-ion collisions, manifests itself through event-by-event fluctuations of transverse-momentum () spectra. The -differential radial flow observable, , was introduced to quantify local spectral-shape fluctuations, but it is unavoidably influenced by global multiplicity fluctuations. Using the HIJING model, we show that different event-activity definitions for centrality classification and different spectral normalization schemes generate a constant vertical offset in without altering its shape. This offset reflects the impact of residual volume/centrality fluctuations rather than genuine dynamical radial flow fluctuations. Accordingly, only the shape of , or equivalently its derivative , carries physical information about radial-flow dynamics; its zero crossing does not. Practical implications include the need to vertically align measurements from different experiments before comparison, thereby removing normalization ambiguities when constraining QGP properties.

8 pages, 7 figures, accepted by Nuclear Science and Techniques