arXiv:2311.03306·v2·Nuclear Theory
Bayesian calibration of viscous anisotropic hydrodynamic (VAH) simulations of heavy-ion collisions
Ulrich Heinz (Ohio State Univ.)🇺🇸 · Dananjaya Liyanage (Ohio State Univ.)🇺🇸 · Cullen Gantenberg (Ohio State Univ., Univ. of Washington)🇺🇸
Abstract
A Bayesian calibration, using experimental data from 2.76 TeV Pb-Pb collisions at the LHC, of a novel hybrid model is presented in which the usual pre-hydrodynamic and viscous relativistic fluid dynamic (vRFD) stages are replaced by a viscous anisotropic hydrodynamic (VAH) core that smoothly interpolates between the initial expansion-dominated, approximately boost-invariant longitudinally free-streaming and the subsequent collision-dominated (3+1)-dimensional standard vRFD stages. This model yields meaningful constraints for the temperature-dependent specific shear and bulk viscosities, and , for temperatures up to about MeV (i.e. over twice the range that could be explored with earlier models). With its best-fit model parameters the calibrated VAH model makes highly successful predictions for additional -dependent observables for which high-quality experimental data are available that were not used for the model calibration.
Comments: 4 pages, 3 figures, to appear in the proceedings of Quark Matter 2023 (Houston, TX, 3-9 Sep. 2023) published by EPJC. Reference added in this version