Composite Weak Bosons, Leptons and Quarks
arXiv:1105.3354 · doi:10.1142/S0217732311036802
Abstract
The weak bosons consist of two fermions, bound by a new confining gauge force. The mass scale of this new interaction is determined. At energies below 0.5 TeV the standard electroweak theory is valid. A neutral isoscalar weak boson X must exist - its mass is less than 1 TeV. It will decay mainly into quark and lepton pairs and into two or three weak bosons. Above the mass of 1 TeV one finds excitations of the weak bosons, which mainly decay into pairs of weak bosons. Leptons and quarks consist of a fermion and a scalar. Pairs of leptons and pairs of quarks form resonances at very high energy.
11 pages, no figures
References in corpus (1)
Cited by in corpus (6)
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- The Size of the Weak Bosons
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- Coleman-Weinberg symmetry breaking in induced by a third rank antisymmetric tensor scalar field II: the fermion spectrum
- Composite Leptons at the LHC
- Excited weak bosons and their decays