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Auteurs principaux: Din, Iqbal Mohi Ud, Mir, Sameer Ahmad, Rather, Nasir Ahmad, Uddin, Saeed, Parra, Rameez Ahmad
Format: Preprint
Publié: 2024
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Accès en ligne:https://arxiv.org/abs/2408.07943
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author Din, Iqbal Mohi Ud
Mir, Sameer Ahmad
Rather, Nasir Ahmad
Uddin, Saeed
Parra, Rameez Ahmad
author_facet Din, Iqbal Mohi Ud
Mir, Sameer Ahmad
Rather, Nasir Ahmad
Uddin, Saeed
Parra, Rameez Ahmad
contents This work investigates the thermo-chemical freeze-out condition of the multi-component hot and dense hadron resonance gas (HRG) formed in the ultra-relativistic nucleus-nucleus collisions (URNNC). The van der Waals (VDW) type model used in the present analysis incorporates the repulsive as well as attractive interactions among the hadrons. The baryons (antibaryons) are treated as incompressible objects. Using this theoretical approach the values of the model freeze-out parameters of the system are extracted over a wide range of collision energy by analyzing experimental data on like-mass antibaryon to baryon ratios. The same set of parameters is found to explain the energy dependence of several other particle ratios quite satisfactorily. We find that the horn-like structures seen in the ratios of strange particles to pions as a function of the collision energy cannot be explained by the VDW-HRG model alone without considering the strangeness imbalance effect in the system. We have compared our freeze-out line with those obtained earlier. The correlation between the $\bar{p}/p$ and $K^-/K^+$ ratios is also examined.
format Preprint
id arxiv_https___arxiv_org_abs_2408_07943
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Collision Energy Dependence of Particle Ratios and Freeze-out Parameters in Ultra Relativistic Nucleus Nucleus Collisions
Din, Iqbal Mohi Ud
Mir, Sameer Ahmad
Rather, Nasir Ahmad
Uddin, Saeed
Parra, Rameez Ahmad
High Energy Physics - Phenomenology
Nuclear Theory
This work investigates the thermo-chemical freeze-out condition of the multi-component hot and dense hadron resonance gas (HRG) formed in the ultra-relativistic nucleus-nucleus collisions (URNNC). The van der Waals (VDW) type model used in the present analysis incorporates the repulsive as well as attractive interactions among the hadrons. The baryons (antibaryons) are treated as incompressible objects. Using this theoretical approach the values of the model freeze-out parameters of the system are extracted over a wide range of collision energy by analyzing experimental data on like-mass antibaryon to baryon ratios. The same set of parameters is found to explain the energy dependence of several other particle ratios quite satisfactorily. We find that the horn-like structures seen in the ratios of strange particles to pions as a function of the collision energy cannot be explained by the VDW-HRG model alone without considering the strangeness imbalance effect in the system. We have compared our freeze-out line with those obtained earlier. The correlation between the $\bar{p}/p$ and $K^-/K^+$ ratios is also examined.
title Collision Energy Dependence of Particle Ratios and Freeze-out Parameters in Ultra Relativistic Nucleus Nucleus Collisions
topic High Energy Physics - Phenomenology
Nuclear Theory
url https://arxiv.org/abs/2408.07943