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arXiv:1804.10906·v2·High Energy Physics — Phenomenology

Predictions for azimuthal anisotropy in Xe+Xe collisions at = 5.44 TeV using a multiphase transport model

Sushanta Tripathy🇮🇳 · Sudipan De🇮🇳 · Mohammed Younus🇮🇳 · Raghunath Sahoo🇮🇳

Abstract

Xe+Xe collision at relativistic energies may provide us with a partonic system whose size is approximately in between those produced by p+p and Pb+Pb collisions. The experimental results on anisotropic flow in Xe+Xe and Pb+Pb collisions should provide us with an opportunity to study system size dependence of . In the present work, we have used AMPT transport model to calculate charged particles' for Xe+Xe collisions at =5.44 TeV. We have also tried to demonstrate the no. of constituent quark, , and scaling of the elliptic flow. We find that scaling of is not observed for the identified hadrons. The results from Xe+Xe collisions have also been compared to Pb+Pb collisions at = 5.02 TeV. We find that flow of charged particles in (50-60)\% central collisions for Xenon nuclei is almost 30\% less than particle flow developed in lead ion collisions, implying the important role the system size play in development of particle collective motion in relativistic heavy ion collisions.

Comments: Same as the published version

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