Dynamics of non-Gaussian fluctuations in model A
Abstract
Motivated by the experimental search for the QCD critical point we perform simulations of a stochastic field theory with purely relaxational dynamics (model A). We verify the expected dynamic scaling of correlation functions. Using a finite size scaling analysis we obtain the dynamic critical exponent . We investigate time dependent correlation functions of higher moments of the order parameter for . We obtain dynamic scaling with the same critical exponent for all , but the relaxation constant depends on . We also study the relaxation of after a quench, where the simulation is initialized in the high temperature phase, and the dynamics is studied at the critical temperature . We find that the evolution does not follow simple scaling with the dynamic exponent , and that it involves an early time rise followed by late stage relaxation.
Cite
@article{arxiv.2204.02433,
title = {Dynamics of non-Gaussian fluctuations in model A},
author = {Thomas Schaefer and Vladimir Skokov},
journal= {arXiv preprint arXiv:2204.02433},
year = {2022}
}
Comments
13 pages, 7 figures. Minor error corrected; shifts normalization of m^2