English

Can Electroweak Theory Without A Higgs Particle Be Renormalizable?

High Energy Physics - Phenomenology 2011-10-19 v2 High Energy Physics - Theory

Abstract

Whether there exists a massive electroweak (EW) theory, without a Higgs spontaneous symmetry breaking mechanism, that is gauge invariant and renormalizable is investigated. A Stueckelberg formalism for massive WW and ZZ bosons is used to derive a gauge invariant EW theory. Negative energy scalar fields that emerge from the gauge invariance of the Lagrangian are removed by invoking an indefinite metric in Hilbert space. A unitary S-matrix and a positive energy spectrum can be obtained by using the PT symmetric formulation of the pseudo-Hermitian Hamiltonian. The theory predicts that if for a system of particles the scalar boson energy Es<μ=λ1/2MWE_s < \mu=\lambda^{1/2}M_W, where λ\lambda is a gauge parameter and MWM_W is the WW boson mass, then as λ\lambda\rightarrow\infty the scalar boson mass μ=λ1/2MW\mu=\lambda^{1/2}M_W tends to infinity. The theory is perturbatively renormalizable and does not violate longitudinally polarized WLWLWLWLW_L W_L\rightarrow W_L W_L scattering in the energy range E<μ=λ1/2MWE < \mu=\lambda^{1/2}M_W for which the scalar bosons have decoupled and they have an undetected mass. This means that with this scenario the EW theory can only be treated as an effective renomalizable theory and not as a UV complete theory.

Keywords

Cite

@article{arxiv.1109.5383,
  title  = {Can Electroweak Theory Without A Higgs Particle Be Renormalizable?},
  author = {J. W. Moffat},
  journal= {arXiv preprint arXiv:1109.5383},
  year   = {2011}
}

Comments

10 pages, no figures. arXiv admin note: some text overlap with arXiv:1006.1859. Minor corrections and additional text

R2 v1 2026-06-21T19:09:57.588Z