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arXiv:2407.07813·v2·High Energy Physics — Phenomenology

Dispersive determination of the fourth generation lepton masses

Hsiang-nan Li🇹🇼

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Abstract

We continue our previous determination of the masses of the sequential fourth generation quarks in an extension of the Standard Model, and predict the mass () of the fourth generation neutrino (charged lepton ) by solving the dispersion relation associated with heavy fermion decays. The results GeV and GeV are extracted from the dispersive analyses of the and decay widths, respectively, where (, , ) denotes a top quark (down quark, positron, light neutrino). The predictions are cross-checked by examining the decay, being an anti-up quark. It is shown that the fourth generation leptons with the above masses survive the current experimental bounds from Higgs boson decays into photon pairs and from the oblique parameters. We also revisit how the existence of the fourth generation leptons impacts the dispersive constraints on the neutrino masses and the Pontecorvo-Maki-Nakagawa-Sakata (PMNS) matrix elements. It is found that the unitarity of the PMNS matrix holds well up to corrections of , () being a light neutrino (the boson) mass, whose mixing angles and phase prefer the values , , and in the normal-ordering scenario for neutrino masses.

Comments: 17 pages, 2 figures, journal version

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