CERN Accelerating science

Article
Report number arXiv:1911.02480
Title Diffusion of heavy quarks in the early stage of high-energy nuclear collisions at energies available at the BNL Relativistic Heavy Ion Collider and at the CERN Large Hadron Collider
Author(s) Liu, J.H. (Lanzhou U. ; INFN, LNS) ; Plumari, S. (Catania U. ; INFN, LNS) ; Das, S.K. (Indian Inst. Tech. Goa) ; Greco, V. (INFN, LNS ; Catania U.) ; Ruggieri, M. (Lanzhou U.)
Publication 2020-10-08
Imprint 2019-11-05
Number of pages 10
Note 12 pages, 8+1 figures. Discussion on the scaling of parameters from three to two colors added in Appendix. Matches published version. arXiv admin note: text overlap with arXiv:1805.09617
In: Phys. Rev. C 102, 4 (2020) pp.044902
DOI 10.1103/PhysRevC.102.044902
10.1103/PhysRevC.102.044902 (publication)
Subject category nucl-ex ; Nuclear Physics - Experiment ; hep-ph ; Particle Physics - Phenomenology ; hep-ex ; Particle Physics - Experiment ; nucl-th ; Nuclear Physics - Theory
Accelerator/Facility, Experiment CERN LHC
Abstract We study the diffusion of charm and beauty in the early stage of high energy nuclear collisions at RHIC and LHC energies, considering the interaction of these heavy quarks with the evolving Glasma by means of the Wong equations. In comparison with previous works, we add the longitudinal expansion as well as we estimate the effect of energy loss due to gluon radiation. We find that heavy quarks diffuse in the strong transverse color fields in the very early stage (0.2-0.3 fm/c) and this leads to a suppression at low $p_T$ and enhancement at intermediate low $p_T$. The shape of the observed nuclear suppression factor obtained within our calculations is in qualitative agreement with the experimental results of the same quantity for $D-$mesons in proton-nucleus collisions. We compute the nuclear suppression factor in nucleus-nucleus collisions as well, for both charm and beauty, finding a substantial impact of the evolving Glasma phase on these, suggesting that initialization of heavy quarks spectra in the quark-gluon plasma phase should not neglect the early evolution in the strong gluon fields.
Copyright/License preprint: (License: arXiv nonexclusive-distrib 1.0)
publication: © 2020-2025 American Physical Society



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