Observation of different scenarios in different temperatures in small and large collision systems
Muhammad Waqas, Lu-Meng Liu, Guang-Xiong Peng, Muhammad Ajaz

TL;DR
This study analyzes particle spectra from various collision systems at different energies, revealing how freeze-out parameters depend on collision centrality, particle mass, and energy, indicating multiple freeze-out scenarios.
Contribution
It introduces a comprehensive analysis of freeze-out parameters across different collision systems and energies, highlighting the dependence on particle mass, cross-section, and collision centrality.
Findings
Freeze-out parameters decrease from central to peripheral collisions.
Larger particle cross-section correlates with smaller kinetic freeze-out temperature.
Higher collision energy results in larger freeze-out temperatures and flow velocities.
Abstract
We used the modified Hagedron function and analyzed the experimental data measured by the BRAHMS, STAR, PHENIX and ALICE Collaborations in Copper-Copper, Gold-Gold, deuteron-Gold, Lead-Lead, proton-Lead and proton-proton collisions, and extracted the related parameters (kinetic freeze-out temperature, transverse flow velocity, kinetic freeze-out volume, mean transverse momentum and initial temperature) from the transverse momentum spectra of the particles (non-strange and strange particles). We observed that all the above parameters decrease from central to peripheral collisions, except transverse flow velocity which remains unchanged from central to peripheral collisions. The kinetic freeze-out temperature depends on the cross-section interaction of the particle such that larger cross-section of the particle corresponds to smaller T0, and reveals the two kinetic freeze-out scenario,…
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Taxonomy
TopicsHigh-Energy Particle Collisions Research · Particle physics theoretical and experimental studies · Quantum Chromodynamics and Particle Interactions
