- Letter
Anisotropy scaling functions in heavy-ion collisions: Insights into the ultracentral flow puzzle and constraints on transport coefficients and nuclear deformation
Phys. Rev. C 110, L031901 – Published 13 September, 2024
DOI: https://doi.org/10.1103/PhysRevC.110.L031901
Abstract
Anisotropy scaling functions derived from comprehensive measurements of transverse momentum- and centrality-dependent anisotropy coefficients and in collisions at 5.02 and 2.76 TeV, collisions at 5.44 TeV, and collisions at 0.2 TeV offer new insights into the ultracentral flow puzzle. These functions integrate diverse measurements into a single curve, clarifying anisotropy attenuation throughout the entire and centrality range. They reveal the influence of initial-state eccentricities (), dimensionless size (), radial flow, viscous correction to the thermal distribution function (), the medium's stopping power (), and specific shear viscosity () on the observed anisotropies. This analysis not only enhances understanding of transport coefficients but also provides crucial constraints on nuclear deformation.