arXiv · hep-ph/9806207
Supercooling of rapidly expanding quark-gluon plasma
Abstract
We reexamine the scenario of homogeneous nucleation of the quark-gluon plasma produced in ultra-relativistic heavy ion collisions. A generalization of the standard nucleation theory to rapidly expanding system is proposed. The nucleation rate is derived via the new scaling parameter $λ_Z$. It is shown that the size distribution of hadronic clusters plays an important role in the dynamics of the phase transition. The longitudinally expanding system is supercooled to about 3-6%, then it is reheated, and the hadronization is completed within 6-10 fm/c, i.e. 5-10 times faster than it was estimated earlier, in a strongly nonequilibrium way.
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E. E. Zabrodin, L. V. Bravina, L. P. Csernai, H. Stöcker, W. Greiner. 1998-05-31. Supercooling of rapidly expanding quark-gluon plasma. https://doi.org/10.1016/s0370-2693(98)00006-9
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