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arXiv:1903.10194·v1·High Energy Physics — Phenomenology

On explaining the observed pattern of quark and lepton masses

Jiri Hosek🇨🇿

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Abstract

Higgs sector of the Standard model (SM) is replaced by the gauge quantum flavor dynamics (QFD) with one parameter, the scale . Anomaly freedom of QFD demands extension of the fermion sector of SM by three sterile right-handed neutrino fields. Poles of fermion propagators with chirality-changing self-energies spontaneously generated by QFD at strong coupling define: (1) Three sterile-neutrino Majorana masses of order . (2) Three Dirac masses , degenerate for in family , exponentially small with respect to . Goldstone theorem implies: All eight flavor gluons acquire masses of order . and bosons acquire masses of order , the effective Fermi scale. Composite 'would-be' Nambu-Goldstone bosons have their 'genuine' partners, the composite Higgs particles: The SM-like Higgs and two new Higgses and , all with masses at Fermi scale; three Higgses with masses at scale . Large pole-mass splitting of charged leptons and quarks in is arguably due to full QED -dependent fermion-photon vertices enforced by Ward-Takahashi identities. The argument relies on illustrative computation of pole-mass splitting found non-analytic in fermion electric charges. Neutrinos are the Majorana particles with seesaw mass spectrum computed solely by QFD. Available data fix to, say, .

Comments: 11 pages, 2 figures