Heavy quark momentum diffusion coefficient during hydrodynamization via effective kinetic theory
In these proceedings, we compute the heavy quark momentum diffusion coefficient using QCD effective kinetic theory for a plasma going through the bottom-up thermalization scenario until approximate hydrodynamization. This transport coefficient describes heavy quark momentum diffusion in the quark-gl...
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Zusammenfassung: | In these proceedings, we compute the heavy quark momentum diffusion
coefficient using QCD effective kinetic theory for a plasma going through the
bottom-up thermalization scenario until approximate hydrodynamization. This
transport coefficient describes heavy quark momentum diffusion in the
quark-gluon plasma and is used in many phenomenological frameworks, e.g. in the
open quantum systems approach. Our extracted nonthermal diffusion coefficient
matches the thermal one for the same energy density within 30\%. At large
occupation numbers in the earliest stage, the transverse diffusion coefficient
dominates, while the longitudinal diffusion coefficient is larger for the
underoccupied system in the later stage of hydrodynamization. |
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DOI: | 10.48550/arxiv.2312.12200 |