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G. Kozlov

Publications and source records attributed to G. Kozlov.

2 recordsLinked to original sources

CP and particle correlations under thermal influence

We study the phase transition of nuclear (baryonic) matter in the model of one-dimensional random fluctuation walk. The stochastic fields (forces) influence intrinsic to Bose-Einstein correlations between two identical particles is a particular ingridient of the model. The solution in terms of the characteristic functional equation contains the regular (homogenious) and the singular non-analytical (non-homogenious) parts for baryonic matter (BM) and anomaly matter (AM), respectively. The conditions to phase transition from BM to AM are found.

hep-ph

The critical end point through observables

We develop the model of the critical phenomena of strongly interacting matter at high temperatures and baryon densities. The dual Yang-Mills theory with scalar degrees of freedom (the dilatons) is used. The dilatons are the consequence of a spontaneous breaking of a scale symmetry. The phase transitions are considered in systems where the field conjugate to the order parameter has the critical end mode. The critical end point (CEP) is a distinct singular feature existence of which is dictated by the chiral dynamics. The physical realization of CEP is via the influence quantum fluctuations of two-body Bose-Einstein correlations for observed particles to which the critical end mode couples.

hep-ph