Beam energy dependence of the linear and mode-coupled flow harmonics in Au+Au collisions

Resource type
Authors/contributors
Title
Beam energy dependence of the linear and mode-coupled flow harmonics in Au+Au collisions
Abstract
The linear and mode-coupled contributions to higher-order anisotropic flow are presented for Au+Au collisions at sNN = 27, 39, 54.4, and 200 GeV and compared to similar measurements for Pb+Pb collisions at the Large Hadron Collider (LHC). The coefficients and the flow harmonics' correlations, which characterize the linear and mode-coupled response to the lower-order anisotropies, indicate a beam energy dependence consistent with an influence from the specific shear viscosity (η/s). In contrast, the dimensionless coefficients, mode-coupled response coefficients, and normalized symmetric cumulants are approximately beam-energy independent, consistent with a significant role from initial-state effects. These measurements could provide unique supplemental constraints to (i) distinguish between different initial-state models and (ii) delineate the temperature (T) and baryon chemical potential (μB) dependence of the specific shear viscosity ηs(T,μB).
Publication
Physics Letters B
Date
2023-04-10
Volume
839
Pages
137755
Journal Abbr
Physics Letters B
Citation Key
starcollaborationBeamEnergyDependence2023a
Accessed
3/2/23, 2:26 PM
ISSN
0370-2693
Language
en
Library Catalog
ScienceDirect
Extra
1 citations (Crossref) [2023-10-31]
Citation
STAR Collaboration. (2023). Beam energy dependence of the linear and mode-coupled flow harmonics in Au+Au collisions. Physics Letters B, 839, 137755. https://doi.org/10.1016/j.physletb.2023.137755