Heavy quark κ and jet q^ transport coefficients in the Glasma early stage of heavy-ion collisions
Avramescu, D., Băran, V., Greco, V., Ipp, A., Müller, D. I., & Ruggieri, M. (2024). Heavy quark κ and jet q^ transport coefficients in the Glasma early stage of heavy-ion collisions. In HardProbes2023: 11th International Conference on Hard and Electromagnetic Probes of High-Energy Nuclear Collisions (Article 056). Sissa Medialab. POS Proceedings of Science, 438. https://doi.org/10.22323/1.438.0056
Published in
POS Proceedings of ScienceAuthors
Date
2024Copyright
© 2024 the Authors
We study the impact of the Glasma fields, used to describe the very early stage of heavy-ion collisions, on the transport of hard probes, namely heavy quarks and jets. We perform numerical simulations of the strong classical fields using techniques from real-time lattice gauge theory. The resulting fields are used as background for the classical transport of ensembles of particles, described by Wong's equations. For this purpose, we develop a numerical solver for the transport of the probes, based on colored particle-in-cell methods. We focus on the dynamics of heavy quarks and jets in the classical colored fields. To quantify the effect of the Glasma, we extract the momentum broadening of hard probes and evaluate the anisotropy transfer from the Glasma to the probes. Lastly, we evaluate the heavy quark κ and jet q^ transport coefficients in the Glasma, which turn out to be large and exhibit a peak, irrespective of the particle initialization.
Publisher
Sissa MedialabConference
International Conference on Hard and Electromagnetic Probes of High-Energy Nuclear CollisionsIs part of publication
HardProbes2023: 11th International Conference on Hard and Electromagnetic Probes of High-Energy Nuclear CollisionsISSN Search the Publication Forum
1824-8039Keywords
Publication in research information system
https://converis.jyu.fi/converis/portal/detail/Publication/215979275
Metadata
Show full item recordCollections
Related funder(s)
Research Council of FinlandFunding program(s)
Centre of Excellence, AoFAdditional information about funding
D. A. acknowledges funding from the Academy of Finland, Center of Excellence in Quark Matter project 346324. V. G. acknowledges funding from UniCT under “Linea di intervento 2” (HQCDyn Grant). D. M. acknowledges funding from the Austrian Science Fund (FWF) projects P 34455 and P 34764.License
Related items
Showing items with similar title or keywords.
-
Jet momentum broadening during initial stages in heavy-ion collisions
Boguslavski, K.; Kurkela, A.; Lappi, T.; Lindenbauer, F.; Peuron, J. (Elsevier, 2024)We study the jet quenching parameter ˆq in the initial pre-equilibrium stages of heavy-ion collisions using the QCD kinetic theory description of the anisotropic quark-gluon plasma. This allows us to smoothly close the gap ... -
Linearly polarized gluons and axial charge fluctuations in the glasma
Lappi, Tuomas; Schlichting, Sören (American Physical Society, 2018)We calculate the one- and two-point correlation functions of the energy density and the divergence of the Chern-Simons current in the nonequilibrium glasma state formed in a high-energy nuclear collision. We show that the ... -
Evolution of initial stage fluctuations in the glasma
Guerrero-Rodríguez, Pablo; Lappi, Tuomas (American Physical Society, 2021)We perform a calculation of the one- and two-point correlation functions of energy density and axial charge deposited in the glasma in the initial stage of a heavy ion collision at finite proper time. We do this by describing ... -
Studying the 3+1D structure of the Glasma using the weak field approximation
Ipp, Andreas; Leuthner, Markus; Müller, David I.; Schlichting, Soeren; Singh, Pragya (EDP Sciences, 2022)We extend the weak field approximation for the Glasma beyond the boost-invariant approximation, which allows us to compute rapidity-dependent observables in the early stages of heavy-ion collisions. We show that in the ... -
Heavy quark diffusion coefficient during hydrodynamization : non-equilibrium vs. equilibrium
Peuron, Jarkko; Boguslavski, Kirill; Kurkela, Aleksi; Lappi, Tuomas; Lindenbauer, Florian (Sissa Medialab, 2024)We compute the heavy quark momentum diffusion coefficient using effective kinetic theory for a system going through bottom-up isotropization until approximate hydrodynamization. We find that when comparing the nonthermal ...