English

Minijet quenching in non-equilibrium quark-gluon plasma

High Energy Physics - Phenomenology 2024-08-26 v2 Nuclear Theory

Abstract

We study the energy deposition and thermalisation of high-momentum on-shell partons (minijets) travelling through a non-equilibrium Quark-Gluon Plasma using QCD kinetic theory. For thermal backgrounds, we show that the parton energy first flows to the soft sector by collinear cascade and then isotropises via elastic scatterings. In contrast, the momentum deposition from a minijet reaches the equilibrium distribution directly. For expanding non-equilibrium QGP, we study the time for a minijet perturbation to lose memory of its initial conditions, namely, the hydrodynamisation time. We show that the minijet evolution scales well with the relaxation time τRη/s/T(τ){\tau}_R \propto {\eta}/s/T ({\tau} ), where T(τ)T ({\tau} ) is the effective temperature and η/s{\eta}/s is the viscosity over entropy ratio.

Keywords

Cite

@article{arxiv.2402.09298,
  title  = {Minijet quenching in non-equilibrium quark-gluon plasma},
  author = {Fabian Zhou and Jasmine Brewer and Aleksas Mazeliauskas},
  journal= {arXiv preprint arXiv:2402.09298},
  year   = {2024}
}

Comments

38 pages, 19 figures, minor corrections and figure added, published version