arXiv:2608.10578·v1·High Energy Physics — Phenomenology
Scaling of soft QGP signatures in relativistic lead, xenon and oxygen collisions in EPOS4
Salman Khurshid Malik🇮🇳 · Fakhar Ul Haider🇮🇳 · Pratibha Bhagat🇮🇳 · Anju Bhasin🇮🇳 · Ramni Gupta🇮🇳
Abstract
The collective expansion and hydrodynamic evolution in heavy-ion collisions is well-established. However, whether femtometer-scale droplets of QGP are produced in small systems at high energies remains a fundamental open question. Analysis of PbPb collisions at = 5.02 TeV, XeXe at = 5.44 TeV and OO collisions at = 5.36 TeV using EPOS4 is reported to make predictions and postdictions. The results are compared with ALICE data for PbPb and XeXe collisions. Charged particle multiplicity (d/d), transverse-momentum () spectra for pions (), kaons (), and protons () are studied. The inclusion of hadronic afterburner, UrQMD (Ultra-relativistic Quantum Molecular Dynamics) is found to be necessary to correctly describe baryon yields. -fluctuations are also studied via normalized correlator, . Lastly, anisotropic flow harmonics (, ) are computed as a function of and centrality. Since EPOS4 has not been extensively studied for flow observables, this study thereby provides a non-trivial assessment of its collective dynamics. The results are compared with experiment wherever data is available. Taken together, this study provides a unified description of soft observables from PbPb through XeXe down to OO and offer quantitative guidance on how such collisions may inform of the properties of the QGP.