Scaling Behavior of Multiplicity Distribution under First-Order Quark-Hadron Phase Transition
arXiv:hep-ph/9805213 · doi:10.1088/0954-3899/25/3/001
Abstract
Multiplicity distribution in small bins is studied within the Ginzburg-Landau description for first-order quark-hadron phase transition. Direct comparison of the distribution with a Poisson one (with the same average) is made. Dynamical factor for the distributionand ratio are studied, and novel scaling behaviors between are found which can be used to detect the formation of quark-gluon plasma.
5 pages in Revtex, 5 eps figures
References in corpus (5)
- Universal behavior of multiplicity differences in quark-hadron phase transition
- Analytical investigation for multiplicity difference correlators under QGP phase transition
- Multiplicity difference correlators under first-order QGP phase transition
- Novel Scaling Behavior for the Multiplicity Distribution under Second-Order Quark-Hadron Phase Transition
- Multiplicities, fluctuations and QCD: Interplay between soft and hard physics?