Refined renormalization group improvement for thermally resummed effective potential
Abstract
We newly develop a renormalization group (RG) improvement for thermally resummed effective potentials. In this method, -functions are consistently defined in resummed perturbation theories, so that order-by-order RG invariance is not spoiled after thermal resummation. With this improvement, scale dependences of phase transition quantities such as a critical temperature, which are known to be notoriously large at the one-loop order, are greatly reduced compared to calculations with the conventional scheme. By taking advantage of the RG invariance, we also devise a resummation method that can incorporate potentially harmful large logarithmic terms and temperature-dependent power corrections in a generic form. We point out that a resummed one-loop effective potential refined by the method can give results that agree with those obtained by resummed two-loop effective potentials within errors.
Keywords
Cite
@article{arxiv.2308.15876,
title = {Refined renormalization group improvement for thermally resummed effective potential},
author = {Koichi Funakubo and Eibun Senaha},
journal= {arXiv preprint arXiv:2308.15876},
year = {2024}
}
Comments
44 pages, 5 figures, v2: clarifications added. version accepted for publication in PRD