activity
19952005
most citedCovariant description of kinetic freeze out through a finite space-like layer

40 citations · 41 across the 3 of their papers we have counts for

collaborators

9 papers

nucl-th200540 cited

Covariant description of kinetic freeze out through a finite space-like layer

E. Molnar, L. P. Csernai, V. K. Magas +2

The problem of Freeze Out (FO) in relativistic heavy ion reactions is addressed. We develop and analyze an idealized one-dimensional model of FO in a finite layer, based on the cov…

hep-ph20041 cited

Freeze Out and the Boltzmann Transport Equation

L. P. Csernai, V. K. Magas, E. Molnar +2

Recently several works have appeared in the literature that addressed the problem of Freeze Out in energetic heavy ion reaction and aimed for a description based on the Boltzmann T…

hep-ph2004

Phase Transitions in High Energy Heavy-Ion Collisions

L. P. Csernai, A. Anderlik, Cs. Anderlik +8

Modelling Quark-Gluon Plasma formation and decay in high energy heavy ion reactions is presented in a framework of a multi-module setup. The collective features, governing the equl…

hep-ph2002

Initial conditions for RHIC collisions

V. K. Magas, L. P. Csernai, D. D. Strottman

An Effective String Rope Model (ESRM) for heavy ion collisions at RHIC energies is presented. Our model takes into account baryon recoil for both target and projectile, arising fro…

hep-ph2001

Multi Module Model for Ultra-Relativistic Heavy Ion Collisions

V. K. Magas, L. P. Csernai, D. Strottman

The Multi Module Model for Ultra-Relativistic Heavy Ion Collisions at RHIC and LHC energies is presented. It uses the Effective String Rope Model for the calculation of the initial…

hep-ph2001

The source of the "third flow component"

V. K. Magas, L. P. Csernai, D. D. Strottman

A model for energy, pressure and flow velocity distributions at the beginning of relativistic heavy ion collisions has been developed to be used as initial condition for hydrodynam…