The $D^*/D$ ratio in heavy ion collisions
Abstract
In this work we study the and multiplicities and how they change during the hadron gas phase of heavy ion collisions. With the help of an effective Lagrangian formalism, we calculate the production and absorption cross sections of the and mesons in a hadronic medium. We compute the time evolution of the abundances and the ratio . They are approximately constant in time. Also, assuming a Bjorken type cooling and using an empirical relation between the freeze-out temperature and the central multiplicity density, we estimate as a function of , which represents the system size. We find that, while the number of 's and 's grows significantly with the system size, their ratio remains approximately constant. This prediction can be compared with future experimental data. Our results suggest that the charm meson interactions in the hadron gas do not change their multiplicities and consequently these mesons are close to chemical equilibrium.
Keywords
Cite
@article{arxiv.2209.03814,
title = {The $D^*/D$ ratio in heavy ion collisions},
author = {L. M. Abreu and F. S. Navarra and H. P. L. Vieira},
journal= {arXiv preprint arXiv:2209.03814},
year = {2022}
}
Comments
11 pages, 8 figures