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Jet Transport Coefficient at the Large Hadron Collider Energies in a Color String Percolation Approach

2021/04/30 by A. N. Mishra, Aditya Nath Mishra, Dushmanta Sahu +2
Physics and Astronomy · #Charged particle #Collider #Color-glass condensate #Geometry #Gluon #Hadron #High-Energy Particle Collisions Research #Jet (fluid) #Large Hadron Collider #Mechanics #Multiplicity (mathematics) #Nuclear physics #Particle physics #Particle physics theoretical and experimental studies #Percolation (cognitive psychology) #Physics #Pseudorapidity #Quantum Chromodynamics and Particle Interactions #Quark #String (physics) #Theoretical physics #hep-ex #hep-ph #hep-th #nucl-ex #nucl-th

paper · pdf · doi:10.3390/physics4010022

published as Physics 4, 315(2022) · Same as the published version

openalex created_date 2021/04/13 · openalex publication_date 2022/03/16 · arxiv created 2022/03/17 · arxiv updated 2022/03/18 · openalex updated_date 2026/08/05

Abstract

Within the color string percolation model (CSPM), jet transport coefficient, q^, is calculated for various multiplicity classes in proton-proton and centrality classes in nucleus-nucleus collisions at the Large Hadron Collider energies for a better understanding of the matter formed in ultra-relativistic collisions. q^ is studied as a function of final state charged particle multiplicity (pseudorapidity density at midrapidity), initial state percolation temperature and energy density. The CSPM results are then compared with different theoretical calculations from the JET Collaboration those incorporate particle energy loss in the medium.

Citations