arXiv:1604.01263·v3·High Energy Physics — Phenomenology
The Hagedorn-type structure of the non-perturbative gluon pressure within the mass gap approach to QCD
V. Gogokhia🇭🇺 · A. Shurgaia🇬🇪 · M. Vasuth🇭🇺
Abstract
We have shown in detail that the low-temperature expansion for the non-perturbative gluon pressure has the Hagedorn-type structure. Its exponential spectrum of all the effective gluonic excitations are expressed in terms of the mass gap. It is this which is responsible for the large-scale dynamical structure of the QCD ground state. The non-perturbative gluon pressure properly scaled has a maximum at some characteristic temperature , separating the low- and high temperature regions. It is exponentially suppressed in the limit. In the limit it demonstrates an exponential rise in the number of dynamical degrees of freedom. Its exponential increase behavior with temperature is valid only up to . This makes it possible to identify with the Hagedorn-type transition temperature , i.e., to put within the mass gap approach to QCD at finite temperature. The non-perturbative gluon pressure has a complicated dependence on the mass gap and temperature near and up to approximately . In the limit of very high temperatures its polynomial character is confirmed, containing the terms proportional to and , multiplied by the corresponding powers of the mass gap. \end{abstract}
Comments: 14 pages, 1 figure, no tables, some unnecessary text has been removed as well as a few references have been cancelled. Short descriptions of the results of arXiv:1012.4157 and arXiv:1409.3375 are presented in sections II, III and IV