English

Asymptotic safety of gravity and the Higgs boson mass

High Energy Physics - Theory 2010-05-07 v2 General Relativity and Quantum Cosmology High Energy Physics - Phenomenology

Abstract

There are indications that gravity is asymptotically safe. The Standard Model (SM) plus gravity could be valid up to arbitrarily high energies. Supposing that this is indeed the case and assuming that there are no intermediate energy scales between the Fermi and Planck scales we address the question of whether the mass of the Higgs boson mHm_H can be predicted. For a positive gravity induced anomalous dimension Aλ>0A_\lambda>0 the running of the quartic scalar self interaction λ\lambda at scales beyond the Planck mass is determined by a fixed point at zero. This results in mH=mmin=126m_H=m_{\rm min}=126 GeV, with only a few GeV uncertainty. This prediction is independent of the details of the short distance running and holds for a wide class of extensions of the SM as well. For Aλ<0A_\lambda <0 one finds mHm_H in the interval mmin<mH<mmax174m_{\rm min}< m_H < m_{\rm max}\simeq 174 GeV, now sensitive to AλA_\lambda and other properties of the short distance running. The case Aλ>0A_\lambda>0 is favored by explicit computations existing in the literature.

Keywords

Cite

@article{arxiv.0912.0208,
  title  = {Asymptotic safety of gravity and the Higgs boson mass},
  author = {Mikhail Shaposhnikov and Christof Wetterich},
  journal= {arXiv preprint arXiv:0912.0208},
  year   = {2010}
}

Comments

8 pages, typos corrected, references added. Journal version