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arXiv:hep-ph/9503427·v1·High Energy Physics — Phenomenology

THE QCD VACUUM, CHIRAL PHASE TRANSITION AND QUARK-GLUON PLASMA

Edward Shuryak · (Physics Department, State Univ of NY at Stony Brook)

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Abstract

In recent years, significant progress was reached in understanding of vacuum and hadronic structure. We review recent works on the {\it point-to-point correlation functions}, comparing those obtained from phenomenology, ``instanton liquid" models and on the lattice. The second topic is physics of chiral symmetry restoration, which may lead to observable hadron modification and unusual event-per-event fluctuations. We discuss collective flow and phenomena related with a remarkable ``softness" of the equation of state near the phase transition, as well as phenomena at small . We also describe recent ideas on the mechanism of chiral restoration, based on formation of {\it polarized instanton-antiinstanton molecules}. The third part, related to quark-gluon plasma, is related mainly with the issue of initial equilibration of QGP in high energy collisions. We discuss different ``parton cascade" approaches and argue that {\it multi-gluon} processes dominate them. We briefly discuss predictions for RHIC and LHC energies.

Comments: A review for the book ``Quark-gluon plasma", R.Hwa, editor. It is a regular LATEX file, figures available from the Author (by FAX or mail)

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