Evidence of the mixed phase formation in nucleus-nucleus collisions
Abstract
Searchers for various irregularities in the behavior of thermodynamic quantities at chemical freeze-out (CFO) are rather important in a view of experimental studies of quark-gluon plasma (QGP). Using the multicomponent hadron resonance gas model (HRGM), developed in (Sagun, 2014; Bugaev et al., 2015), we performed a high-quality fit of 111 hadronic ratios measured for 14 values of the center of mass collision energies between 2.7 GeV and 200 GeV with the overall fit quality . In addition to previously reported singularities (Bugaev et al., 2015) at CFO we found that the hadron yield ratios , , , and measured in central nuclear collisions demonstrate a significant change of slope in the same range of center of mass collision energy GeV (Bugaev et al., 2015). This change of slopes is accompanied by a dramatic increase of resonance decays at CFO. Also at CFO the trace anomaly and baryonic density demonstrate the pronounced peaks at the collision energy GeV. We argue that all these and previously found irregularities provide an evidence for the QGP formation in nuclear collisions at about GeV.
Keywords
Cite
@article{arxiv.1611.09217,
title = {Evidence of the mixed phase formation in nucleus-nucleus collisions},
author = {V. V. Sagun and K. A. Bugaev and A. I. Ivanytskyi and D. R. Oliinychenko},
journal= {arXiv preprint arXiv:1611.09217},
year = {2017}
}
Comments
Proceedings of the Week of Doctoral Students (WDS) 2016 Conference, 6 pages, 4 figures