English

Elementary particle non-perturbative mass generation. A step towards a beyond-the-Standard-Model model

High Energy Physics - Phenomenology 2022-09-07 v1 High Energy Physics - Theory

Abstract

We show that a recently discovered non-perturbative field-theoretical mechanism giving mass to elementary fermions, is also capable of generating a mass for the electro-weak bosons and can thus be used as a viable alternative to the Higgs scenario. A detailed analysis of this remarkable feature shows that the non-perturbatively generated fermion and WW masses have the parametric form mfCf(α)ΛRGIm_{f}\sim C_f(\alpha)\Lambda_{RGI} and MWgwcw(α)ΛRGIM_W\sim g_w c_w(\alpha)\Lambda_{RGI}, respectively, where the coefficients Cf(α)C_f(\alpha) and cw(α)c_w(\alpha) are functions of the gauge couplings, gwg_w is the weak coupling and ΛRGI\Lambda_{\rm RGI} is the RGI scale of the theory. In view of these expressions, we see that to match the experimental values of the top quark and WW masses, we are led to conjecture the existence of a yet unobserved sector of massive fermions (that we denote Tera-fermions) subjected, besides ordinary Standard Model interactions, to some kind of super-strong gauge interactions (Tera-interactions), so that the full theory (SM plus Tera-particles) will have an RGI scale ΛRGIΛT\Lambda_{\rm RGI}\equiv \Lambda_T in the TeV region. This approach offers a solution of the mass naturalness problem (there is no fundamental Higgs), an understanding of the fermion mass hierarchy and a physical interpretation of the electro-weak scale as a fraction of ΛT\Lambda_T.

Keywords

Cite

@article{arxiv.2209.01995,
  title  = {Elementary particle non-perturbative mass generation. A step towards a beyond-the-Standard-Model model},
  author = {Giancarlo Rossi},
  journal= {arXiv preprint arXiv:2209.01995},
  year   = {2022}
}

Comments

6 pages, 5 figures, Conference contribution

R2 v1 2026-06-28T00:44:42.946Z