English

Protecting the Stability of the EW Vacuum from Planck-Scale Gravitational Effects

High Energy Physics - Phenomenology 2018-10-10 v2

Abstract

We investigate the stability of the Standard-Model Electroweak (EW) vacuum in the presence of Planck-scale suppressed operators of the type ϕ2n/MP2n4\phi^{2n}/M^{2n-4}_{\rm P} that involve the Higgs field ϕ\phi and could in principle be induced by quantum gravity effects. We show how minimal embeddings of the Standard Model (SM) in supergravity (SUGRA) can stabilize the EW vacuum against such operators up to very high values of the induced supersymmetry breaking scale MSM_{\cal S}, which may well be above the onset of the so-called SM metastability scale of 101110^{11} GeV. In particular, we explicitly demonstrate how discrete RR symmetries could be invoked to suppress the occurrence of harmful Planck-scale operators of the form ϕ2n/MP2n4\phi^{2n}/M^{2n-4}_{\rm P} to arbitrary higher powers of nn. We analyze different scenarios of Planck-scale gravitational physics and derive lower limits on the power nn that is required in order to protect our EW vacuum from dangerous rapid decay. The significance of our results for theories of low-scale quantum gravity is illustrated.

Keywords

Cite

@article{arxiv.1806.11059,
  title  = {Protecting the Stability of the EW Vacuum from Planck-Scale Gravitational Effects},
  author = {Vincenzo Branchina and Filippo Contino and Apostolos Pilaftsis},
  journal= {arXiv preprint arXiv:1806.11059},
  year   = {2018}
}

Comments

16 pages, 5 Figures, clarifications regarding the consistency of the EFT models with Swampland criteria added. To appear in Physical Review D. In memory of our esteemed colleague and friend, Maria Krawczyk