Thermal ratio of the disorder deviation and the space-time deconfined phase size
Abstract
Description
A systematic study of the strongly interacting matter under extreme conditions via the form of the thermal ratio of the disorder deviation is presented. The evolution of fermi- and bose- particles (quarks and gluons) is studied in the framework of multi-particle correlation and distribution functions to predict the size of the finite-temperature deconfined phase.
8 pages, LaTeX, no figures, no tables; the talk presented at the XV Int. Seminar on High Energy Physics Problems "Relativistic Nuclear Physics and Quantum Chromodynamics", Dubna, Russia, 25-29.09.2000; to appear in the Proceedings
8 pages, LaTeX, no figures, no tables; the talk presented at the XV Int. Seminar on High Energy Physics Problems "Relativistic Nuclear Physics and Quantum Chromodynamics", Dubna, Russia, 25-29.09.2000; to appear in the Proceedings