Stability analysis of non-thermal fixed points in longitudinally expanding kinetic theory
High Energy Physics - Phenomenology
2022-07-01 v2 Quantum Gases
Nuclear Theory
Abstract
We use the Hamiltonian formulation of kinetic theory to perform a stability analysis of non-thermal fixed points in a non-Abelian plasma. We construct a perturbative expansion of the Fokker-Planck collision kernel in an adiabatic approximation and show that the (next-to-)leading order solutions reproduce the known non-thermal fixed point scaling exponents. Working at next-to-leading order, we derive the stability equations for scaling exponents and find the relaxation rate to the non-thermal fixed point. This approach provides the basis for an understanding of the prescaling phenomena observed in QCD kinetic theory and non-relativistic Bose gas systems.
Keywords
Cite
@article{arxiv.2203.02299,
title = {Stability analysis of non-thermal fixed points in longitudinally expanding kinetic theory},
author = {Aleksandr N. Mikheev and Aleksas Mazeliauskas and Jürgen Berges},
journal= {arXiv preprint arXiv:2203.02299},
year = {2022}
}
Comments
9 pages, 2 figures. Minor changes, published version