Boundary conditions and the two-point function plateau for the hierarchical $|φ|^4$ model in dimensions 4 and higher

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Autori principali: Park, Jiwoon, Slade, Gordon
Natura: Preprint
Pubblicazione: 2024
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author Park, Jiwoon
Slade, Gordon
author_facet Park, Jiwoon
Slade, Gordon
contents We obtain precise plateau estimates for the two-point function of the finite-volume weakly-coupled hierarchical $|φ|^4$ model in dimensions $d \ge 4$, for both free and periodic boundary conditions, and for any number $n \ge 1$ of components of the field $φ$. We prove that, within a critical window around their respective effective critical points, the two-point functions for both free and periodic boundary conditions have a plateau, in the sense that they decay as $|x|^{-(d-2)}$ until reaching a constant plateau value of order $V^{-1/2}$ (with a logarithmic correction for $d=4$), where $V$ is size of the finite volume. The two critical windows for free and periodic boundary conditions do not overlap. The dependence of the plateau height on the location within the critical window is governed by an explicit $n$-dependent universal profile which is independent of the dimension. The proof is based on a rigorous renormalisation group method and extends the method used by Michta, Park and Slade (arXiv:2306.00896) to study the finite-volume susceptibility and related quantities. Our results lead to precise conjectures concerning Euclidean (non-hierarchical) models of spin systems and self-avoiding walk in dimensions $d \ge 4$.
format Preprint
id arxiv_https___arxiv_org_abs_2405_17344
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Boundary conditions and the two-point function plateau for the hierarchical $|φ|^4$ model in dimensions 4 and higher
Park, Jiwoon
Slade, Gordon
Mathematical Physics
Probability
82B27, 82B28, 60K35
We obtain precise plateau estimates for the two-point function of the finite-volume weakly-coupled hierarchical $|φ|^4$ model in dimensions $d \ge 4$, for both free and periodic boundary conditions, and for any number $n \ge 1$ of components of the field $φ$. We prove that, within a critical window around their respective effective critical points, the two-point functions for both free and periodic boundary conditions have a plateau, in the sense that they decay as $|x|^{-(d-2)}$ until reaching a constant plateau value of order $V^{-1/2}$ (with a logarithmic correction for $d=4$), where $V$ is size of the finite volume. The two critical windows for free and periodic boundary conditions do not overlap. The dependence of the plateau height on the location within the critical window is governed by an explicit $n$-dependent universal profile which is independent of the dimension. The proof is based on a rigorous renormalisation group method and extends the method used by Michta, Park and Slade (arXiv:2306.00896) to study the finite-volume susceptibility and related quantities. Our results lead to precise conjectures concerning Euclidean (non-hierarchical) models of spin systems and self-avoiding walk in dimensions $d \ge 4$.
title Boundary conditions and the two-point function plateau for the hierarchical $|φ|^4$ model in dimensions 4 and higher
topic Mathematical Physics
Probability
82B27, 82B28, 60K35
url https://arxiv.org/abs/2405.17344