arXiv:hep-ph/0012164·v1·High Energy Physics — Phenomenology
Pion production from a critical QCD phase
N.G. Antoniou🇬🇷 · Y.F. Contoyiannis🇬🇷 · F.K. Diakonos🇬🇷 · A.I. Karanikas🇬🇷 · C.N. Ktorides (University of Athens)🇬🇷
Abstract
A theoretical scheme which relates multiparticle states generated in ultrarelativistic nuclear collisions to a QCD phase transition is considered in the framework of the universality class provided by the 3-D Ising model. Two different evolution scenarios for the QGP system are examined. The statistical mechanics of the critical state is accounted for in terms of (critical) cluster formation consistent with suitably cast effective action functionals, one for each considered type of expansion. Fractal properties associated with these clusters, characterizing the density fluctuations near the QCD critical point, are determined. Monte-Carlo simulations are employed to generate events, pertaining to the total system, which correspond to signals associated with unconventional sources of pion production.