English

On the breakdown of dimensional reduction and supersymmetry in random-field models

Disordered Systems and Neural Networks 2025-07-02 v3 High Energy Physics - Theory

Abstract

We discuss the breakdown of the Parisi-Sourlas supersymmetry (SUSY) and of the dimensional-reduction (DR) property in the random field Ising and O(NN) models as a function of space dimension dd and/or number of components NN. The functional renormalization group (FRG) predicts that this takes place below a critical line dDR(N)d_{\rm DR}(N). We revisit the perturbative FRG results for the RFO(NN)M in d=4+ϵd=4+\epsilon and carry out a more comprehensive investigation of the nonperturbative FRG approximation for the RFIM. In light of this FRG description, we discuss the perturbative results in ϵ=6d\epsilon=6-d recently derived for the RFIM by Kaviraj, Rychkov, and Trevisani. We stress in particular that the disappearance of the SUSY/DR fixed point below dDRd_{\rm DR} arises as a consequence of the nonlinearity of the FRG equations and cannot be found via the perturbative expansion in ϵ=6d\epsilon=6-d (nor in 1/N1/N). We also provide an error bar on the value of the critical dimension dDRd_{\rm DR} for the RFIM, which we find around 5.11±0.095.11\pm0.09, by studying several successive orders of the nonperturbative FRG approximation scheme.

Keywords

Cite

@article{arxiv.2411.11147,
  title  = {On the breakdown of dimensional reduction and supersymmetry in random-field models},
  author = {Gilles Tarjus and Matthieu Tissier and Ivan Balog},
  journal= {arXiv preprint arXiv:2411.11147},
  year   = {2025}
}

Comments

29 pages, 6 figures, 7 appendices. Submitted to SciPost Physics