English

Dimensional reduction breakdown and correction to scaling in the random-field Ising model

Disordered Systems and Neural Networks 2021-01-04 v1

Abstract

We provide a theoretical analysis by means of the nonperturbative functional renormalization group (NP-FRG) of the corrections to scaling in the critical behavior of the random-field Ising model (RFIM) near the dimension dDR5.1d_{DR}\approx 5.1 that separates a region where the renormalized theory at the fixed point is supersymmetric and critical scaling satisfies the dd2d\to d-2 dimensional reduction property (d>dDRd>d_{DR}) from a region where both supersymmetry and dimensional reduction break down at criticality (d<dDRd<d_{DR}). We show that the NP-FRG results are in very good agreement with recent large-scale lattice simulations of the RFIM in d=5d=5 and we detail the consequences for the leading correction-to-scaling exponent of the peculiar boundary-layer mechanism by which the dimensional-reduction fixed point disappears and the dimensional-reduction-broken fixed point emerges in dDRd_{DR}.

Keywords

Cite

@article{arxiv.2008.13650,
  title  = {Dimensional reduction breakdown and correction to scaling in the random-field Ising model},
  author = {Ivan Balog and Gilles Tarjus and Matthieu Tissier},
  journal= {arXiv preprint arXiv:2008.13650},
  year   = {2021}
}
R2 v1 2026-06-23T18:12:49.707Z