English

Unruh thermalization, gluon condensation and freeze-out

High Energy Physics - Phenomenology 2016-10-19 v2

Abstract

The deconfinement transition and the hadronization mechanism at high energy are related to the quark-antiquark string breaking and the corresponding temperature depends on the string tension σ\sigma. In the Unruh scheme of hadron production it turns out T=σ/2πT = \sqrt{\sigma/2\pi}, with σ\E\sigma \simeq \E, the vacuum energy density. In heavy ion collisions at lower energy, i.e. large baryonchemical potential, μB\mu_B, the dynamics is dominated by Fermi statistics and baryon repulsion. However one can still consider \E\E as the relevant physical scale and its evaluation as a function of the baryon density, in a nuclear matter approach, gives dynamical information on the μB\mu_B dependence of the hadronization temperature and on the value of the critical end point in the TμBT-\mu_B plane.

Keywords

Cite

@article{arxiv.1606.08630,
  title  = {Unruh thermalization, gluon condensation and freeze-out},
  author = {P. Castorina and D. Lanteri},
  journal= {arXiv preprint arXiv:1606.08630},
  year   = {2016}
}

Comments

8 pages, 6 figures, typos corrections and changes in the figures. In press in PRD