Flowing with the Temporal Renormalisation Group
arXiv:1910.09369 · doi:10.1103/PhysRevD.104.025005
Abstract
We discuss the far-from-equilibrium evolution of -theory in dimensions with the temporal functional renormalisation group \cite{Gasenzer:2007za, Gasenzer:2010rq}. In particular, we show that this manifestly causal approach leads to novel one-loop exact equations for fully dressed correlation functions. Within this setup, we numerically compute the dynamical propagator. Its behaviour suggests self-similarity far from equilibrium in a restricted momentum regime. We discuss the scaling exponents for our solution, as well as the numerical satisfaction of energy and particle number conservation. We also derive a simple exact representation of the expectation value of the energy-momentum tensor solely in terms of the propagator.
16 pages, 16 figures. v2: Added comments in Secs. II and III, added refs, corrected typos