English

Naturalness of asymptotically safe Higgs

High Energy Physics - Phenomenology 2017-09-28 v2

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 Λ\Lambda. 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 Λ\Lambda. 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 Λ\Lambda. Although we do not have an answer to whether the Standard Model hypercharge coupling growth towards a Landau pole at around Λ1040\Lambda \sim 10^{40} 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