arXiv:2510.06996·v2·Nuclear Theory
Transport-based initial conditions for heavy-ion collisions at finite densities
H. Roch🇺🇸 · G. Pihan🇺🇸 · A. Monnai🇯🇵 · S. Ryu🇺🇸 · N. Senthilkumar🇺🇸 · J. Staudenmaier🇩🇪 · H. Elfner🇩🇪 · B. Schenke🇺🇸 · J. H. Putschke🇺🇸 · C. Shen🇺🇸 · S. A. Bass🇺🇸 · M. Chartier🇬🇧
Abstract
We employ the SMASH transport model to provide event-by-event initial conditions for the energy-momentum tensor and conserved charge currents in hydrodynamic simulations of relativistic heavy-ion collisions. We study the fluctuations and dynamical evolution of three conserved charge currents (net baryon, net electric charges, and net strangeness) with a 4D lattice-QCD-based equation of state, NEOS-4D, in the hydrodynamic phase. Out-of-equilibrium corrections at the particlization are generalized to finite densities to ensure the conservation of energy, momentum, and the three types of charges. These theoretical developments are integrated within the X-SCAPE code as a unified framework for studying the nuclear matter properties in the Beam Energy Scan program.
Comments: 17 pages, 12 figures