Running coupling and non-perturbative corrections for O$(N)$ free energy and for disk capacitor

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Bajnok, Zoltan, Balog, Janos, Hegedus, Arpad, Vona, Istvan
Format: Preprint
Published: 2022
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866912203899142144
author Bajnok, Zoltan
Balog, Janos
Hegedus, Arpad
Vona, Istvan
author_facet Bajnok, Zoltan
Balog, Janos
Hegedus, Arpad
Vona, Istvan
contents We reconsider the complete solution of the linear TBA equation describing the energy density of finite density states in the $O(N)$ nonlinear sigma models by the Wiener-Hopf method. We keep all perturbative and non-perturbative contributions and introduce a running coupling in terms of which all asymptotic series appearing in the problem can be represented as pure power series without logs. We work out the first non-perturbative contribution in the $O(3)$ case and show that (presumably because of the instanton corrections) resurgence theory fails in this example. Using the relation of the $O(3)$ problem to the coaxial disks capacitor problem we work out the leading non-perturbative terms for the latter and show that (at least to this order) resurgence theory, in particular the median resummation prescription, gives the correct answer. We demonstrate this by comparing the Wiener-Hopf results to the high precision numerical solution of the original integral equation.
format Preprint
id arxiv_https___arxiv_org_abs_2204_13365
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Running coupling and non-perturbative corrections for O$(N)$ free energy and for disk capacitor
Bajnok, Zoltan
Balog, Janos
Hegedus, Arpad
Vona, Istvan
High Energy Physics - Theory
We reconsider the complete solution of the linear TBA equation describing the energy density of finite density states in the $O(N)$ nonlinear sigma models by the Wiener-Hopf method. We keep all perturbative and non-perturbative contributions and introduce a running coupling in terms of which all asymptotic series appearing in the problem can be represented as pure power series without logs. We work out the first non-perturbative contribution in the $O(3)$ case and show that (presumably because of the instanton corrections) resurgence theory fails in this example. Using the relation of the $O(3)$ problem to the coaxial disks capacitor problem we work out the leading non-perturbative terms for the latter and show that (at least to this order) resurgence theory, in particular the median resummation prescription, gives the correct answer. We demonstrate this by comparing the Wiener-Hopf results to the high precision numerical solution of the original integral equation.
title Running coupling and non-perturbative corrections for O$(N)$ free energy and for disk capacitor
topic High Energy Physics - Theory
url https://arxiv.org/abs/2204.13365