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arXiv:1712.05366·v2·High Energy Physics — Phenomenology

Non-universal Z' from SO(10) GUTs with vector-like family and the origin of neutrino masses

Stefan Antusch🇨🇭 · Christian Hohl🇨🇭 · Steve F. King🇬🇧 · Vasja Susic🇨🇭

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Abstract

A gauge boson with mass around the (few) TeV scale is a popular example of physics beyond the Standard Model (SM) and can be a fascinating remnant of a Grand Unified Theory (GUT). Recently, models with non-universal couplings to the SM fermions due to extra vector-like states have received attention as potential explanations of the present , anomalies; this includes GUT model proposals based on the group. In this paper we further develop GUT models with a flavour non-universal low scale and clarify several outstanding issues within them. First, we successfully incorporate a realistic neutrino sector (with linear and/or inverse low scale seesaw mechanism), which was so far a missing ingredient. Second, we investigate in detail their compatibility with the , anomalies; we find that the anomalies do not have a consistent explanation within such models. Third, we demonstrate that these models have other compelling phenomenological features; we study the correlations between the flavour violating processes of and - conversion in a muonic atom, showing how a GUT imprint could manifest itself in experiments.

Comments: Revised version, published in NPB. New material, general conclusions unchanged. 30 pages, 4 figures, 2 tables

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