On ambiguities and divergences in perturbative renormalization group functions
Global Symmetries
High Energy Physics - Theory
530 Physics
FOS: Physical sciences
QC770-798
01 natural sciences
High Energy Physics - Theory (hep-th)
Nuclear and particle physics. Atomic energy. Radioactivity
0103 physical sciences
Renormalization Group
Renormalization Regularization and Renormalons
DOI:
10.1007/jhep06(2021)116
Publication Date:
2021-06-18T15:02:46Z
AUTHORS (2)
ABSTRACT
Abstract
There is an ambiguity in choosing field-strength renormalization factors in the $$ \overline{\mathrm{MS}} $$
MS
¯
scheme starting from the 3-loop order in perturbation theory. More concerning, trivially choosing Hermitian factors has been shown to produce divergent renormalization group functions, which are commonly understood to be finite quantities. We demonstrate that the divergences of the RG functions are such that they vanish in the RG equation due to the Ward identity associated with the flavor symmetry. It turns out that any such divergences can be removed using the renormalization ambiguity and that the use of the flavor-improved β-function is preferred. We show how our observations resolve the issue of divergences appearing in previous calculations of the 3-loop SM Yukawa β-functions and provide the first calculation of the flavor-improved 3-loop SM β-functions in the gaugeless limit.
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