Naturalness of asymptotically safe Higgs
Abstract
We extend the list of theories featuring a rigorous interacting ultraviolet fixed point by constructing the first theory featuring a Higgs-like scalar with gauge, Yukawa and quartic interactions. We show that the theory enters a perturbative asymptotically safe regime at energies above a physical scale . We determine the salient properties of the theory and use it as a concrete example to test whether scalars masses unavoidably receive quantum correction of order . Having at our dispose a calculable model allowing us to precisely relate the IR and UV of the theory we demonstrate that the scalars can be lighter than . Although we do not have an answer to whether the Standard Model hypercharge coupling growth towards a Landau pole at around GeV can be tamed by non-perturbative asymptotic safety, our results indicate that such a possibility is worth exploring. In fact, if successful, it might also offer an explanation for the unbearable lightness of the Higgs.
Keywords
Cite
@article{arxiv.1701.01453,
title = {Naturalness of asymptotically safe Higgs},
author = {Giulio Maria Pelaggi and Francesco Sannino and Alessandro Strumia and Elena Vigiani},
journal= {arXiv preprint arXiv:1701.01453},
year = {2017}
}
Comments
17 pages. v2: final version; extra argument in the conclusions makes obvious why our claims are correct