Conformal invariance and vector operators in the $O(N)$ model
Abstract
It is widely expected that, for a large class of models, scale invariance implies conformal invariance. A sufficient condition for this to happen is that there exists no integrated vector operator, invariant under all internal symmetries of the model, with scaling dimension . In this article, we compute the scaling dimensions of vector operators with lowest dimensions in the model. We use three different approximation schemes: expansion, large limit and third order of the Derivative Expansion of Non-Perturbative Renormalization Group equations. We find that the scaling dimensions of all considered integrated vector operators are always much larger than . This strongly supports the existence of conformal invariance in this model. For the Ising model, an argument based on correlation functions inequalities was derived, which yields a lower bound for the scaling dimension of the vector perturbations. We generalize this proof to the case of the model with .
Cite
@article{arxiv.1907.09981,
title = {Conformal invariance and vector operators in the $O(N)$ model},
author = {Gonzalo De Polsi and Matthieu Tissier and Nicolás Wschebor},
journal= {arXiv preprint arXiv:1907.09981},
year = {2020}
}
Comments
43 pages, 7 figures. This version includes some of the material previously included in arXiv:1804.08374