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arXiv:2211.14795·v2·High Energy Physics — Phenomenology

Effect of hadronic cascade time on freeze-out properties of Identified Hadrons in Au+Au Collisions at = 7.7-39 GeV from AMPT Model

M. U. Ashraf🇧🇪 · Junaid Tariq🇵🇰 · A. M. Khan🇨🇳

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Abstract

We report the transverse momentum spectra of identified hadrons (, and ) in Au+Au collisions at = 7.7 - 39 GeV from A Multi Phase Transport Model with string melting effect (AMPT-SM). During this study, a new set of parameters are explored to study the effect of hadronic cascade by varying hadronic cascade time = 30 m/ and 0.4 m/. No significant effect of this change is observed in the spectra of light hadrons and the AMPT-SM model reasonably reproduces the experimental data. To investigate the kinetic freeze-out properties the blast wave fit is performed to the spectra and it is found that the blast wave model describes the AMPT-SM simulations well. We additionally observe that the kinetic freeze-out temperature () increases from central to peripheral collisions, which is consistent with the argument of short-lived fireball in peripheral collisions. Whereas the transverse flow velocity, shows a decreasing trend from central to peripheral collisions indicating a more rapid expansion in the central collisions. Both, and show a weak dependence on the collision energy at most energies. We also observe a strong anti-correlation between and . The extracted freeze-out parameters from the AMPT-SM simulations agree with the experimental data as opposed to earlier studies that reported some discrepancies. Whereas, no significant effect is found on the freeze-out parameters by varying the . We also report the spectra of light hadrons and their freeze-out parameters by AMPT-SM simulations at = 14.5 GeV, where no experimental data is available for comparison. Overall, the set of parameters used in this study well describes the experimental data at BES energies.

Comments: 12 pages, 7 figures, 2 tables

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