Dynamical Freeze-out in 3-Fluid Hydrodynamics
Abstract
Freeze-out procedure accepted in the model of 3-fluid dynamics (3FD) is analyzed. This procedure is formulated in terms of drain terms in hydrodynamic equations. Dynamics of the freeze-out is illustrated by 1-dimensional simulations. It is demonstrated that the resulting freeze-out reveals a nontrivial dynamics depending on initial conditions in the expanding ``fireball''. The freeze-out front is not defined just ``geometrically'' on the condition of the freeze-out criterion met but rather is a subject the fluid evolution. It competes with the fluid flow and not always reaches the place where the freeze-out criterion is met. Dynamics of the freeze-out in 3D simulations is analyzed. It is demonstrated that the late stage of central nuclear collisions at top SPS energies is of the form of three (two baryon-rich and one baryon-free) fireballs separated from each other.
Keywords
Cite
@article{arxiv.nucl-th/0611094,
title = {Dynamical Freeze-out in 3-Fluid Hydrodynamics},
author = {V. N. Russkikh and Yu. B. Ivanov},
journal= {arXiv preprint arXiv:nucl-th/0611094},
year = {2009}
}
Comments
16 pages, 11 figures. Version accepted to Phys. Rev. C