arXiv:hep-ph/0202225·v3·High Energy Physics — Phenomenology
The Quark Gluon Pion Plasma
Vikram Soni · Moninder Singh Modgil · Desdeep Sahdev
Abstract
While it is commonly believed that there is a {\it direct} transition from the hadronic to a quark gluon phase at high temperature, it would be prejudicial to rule out a sequence of dynamically generated intermediate scales. Using as guide, an effective lagrangian with unconfined gluons and constituent quarks, interacting with a chiral multiplet, we examine a scenario in which the system undergoes first-order transitions at , the compositeness scale of the pions, at , the scale for spontaneous chiral symmetry breaking, and at , the confinement temperature. We find that at current energies, it is likely that the formation temperature of the plasma, , and that this is therefore a quark gluon pion plasma (QGPP) rather than the usual quark gluon plasma (QGP). We propose some dilepton-related signatures of this scenario.
Comments: Rewritten, new figures