English

Off-equilibrium scaling driven by a time-dependent magnetic field in O(N) vector models

Statistical Mechanics 2019-01-25 v1

Abstract

We investigate the off-equilibrium dynamics of a spin system with O(NN) symmetry in 2<d<42 < d < 4 spatial dimensions arising by the presence of a slowly varying time-dependent magnetic field h(t,ts)t/tsh(t,t_s) \sim t/t_s, tst_s is a time scale, at the critical temperature T=TcT = T_c and below it T<TcT < T_c. After showing the general theory, we demonstrate the off-equilibrium scaling and we formally compute the correlation functions in the limit of large NN. We derive the off-equilibrium scaling relations for the hysteresis loop area and for the magnetic work done by the system when the magnetic field h(t,ts)h(t,t_s) is varied across the phase transitions cyclically in time. We also investigate the first deviations from the equilibrium behavior in the correlation functions checking the consistence for an exponential approach.

Keywords

Cite

@article{arxiv.1611.04367,
  title  = {Off-equilibrium scaling driven by a time-dependent magnetic field in O(N) vector models},
  author = {Stefano Scopa},
  journal= {arXiv preprint arXiv:1611.04367},
  year   = {2019}
}
R2 v1 2026-06-22T16:51:24.464Z