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Effective (kinetic freeze-out) temperature, transverse flow velocity, and kinetic freeze-out volume in high energy collisions

2020/01/31 by Muhammad Waqas, M. Waqas, F. H. Liu +5 · 35 citations
Engineering · Medicine · Physics and Astronomy · #Classical mechanics #Computational Fluid Dynamics and Aerodynamics #Flow (mathematics) #Fluid Dynamics and Turbulent Flows #High-Energy Particle Collisions Research #Kinetic energy #Kinetic theory #Materials science #Mechanics #Medicine #Physics #Thermodynamics #Transverse plane #Volume (thermodynamics) #hep-ex #hep-ph #nucl-ex #nucl-th

paper · pdf · doi:10.1007/s41365-020-00821-7

published in Nuclear Science and Techniques 31(11) (Springer Nature) · 16 pages, 6 figures. Nuclear Science and Techniques, accepted

openalex created_date 2020/04/17 · arxiv created 2020/09/17 · openalex publication_date 2020/11/01 · arxiv updated 2020/11/10 · openalex updated_date 2026/08/05

Abstract

The transverse momentum spectra of different types of particles produced in central and peripheral gold-gold (Au-Au) and (inelastic) proton-proton (pp) collisions at the Relativistic Heavy Ion Collider (RHIC), as well as in central and peripheral lead-lead (Pb-Pb) and pp collisions at the Large Hadron Collider (LHC) are analyzed by the standard distribution in terms of multi-component. The obtained results from the standard distribution give an approximate agreement with the measured experimental data by the STAR, PHENIX and ALICE Collaborations. The methodical behavior of the effective (kinetic freeze-out) temperature, transverse flow velocity and kinetic freeze-out volume with the mass dependence for different particles is obtained, which observes the early kinetic freeze-out of heavier particles as compared to the lighter particles. The parameters for emissions of different particles are observed to be different, which reveals a direct signature of the mass dependent differential kinetic freeze-out. It is also observed that the peripheral nucleus-nucleus (AA) and pp collisions at the same center-of-mass energy per nucleon pair are close in terms of the extracted parameters.

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