arXiv:1506.05580·v2·High Energy Physics — Phenomenology
Kinetic theory of a longitudinally expanding system of scalar particles
Thomas Epelbaum🇨🇦 · Francois Gelis🇫🇷 · Sangyong Jeon🇨🇦 · Guy Moore🇩🇪 · Bin Wu🇫🇷
Abstract
A simple kinematical argument suggests that the classical approximation may be inadequate to describe the evolution of a system with an anisotropic particle distribution. In order to verify this quantitatively, we study the Boltzmann equation for a longitudinally expanding system of scalar particles interacting with a coupling, that mimics the kinematics of a heavy ion collision at very high energy. We consider only elastic scatterings, and we allow the formation of a Bose-Einstein condensate in overpopulated situations by solving the coupled equations for the particle distribution and the particle density in the zero mode. For generic CGC-like initial conditions with a large occupation number and a moderate coupling, the solutions of the full Boltzmann equation do not follow a classical attractor behavior.
Comments: 26 figures, 47 pages