Electroweak couplings and LHC constraints on alternative $Z^{\prime}$ models in $E_6$
Richard H. Benavides, Luis Mu\~noz, William A. Ponce, Oscar, Rodr\'iguez, Eduardo Rojas

TL;DR
This paper derives general expressions for $Z'$ gauge boson charges from $E_6$ models, explores their low-energy phenomenology, and uses LHC data to set mass limits on these particles.
Contribution
It provides a comprehensive framework for calculating $Z'$ charges in $E_6$ models and constrains their parameters using recent LHC dilepton data.
Findings
Derived general $Z'$ charge expressions from $E_6$
Identified parameter space regions consistent with unification
Set lower mass limits on $Z'$ using ATLAS data
Abstract
We report the most general expression for the chiral charges of a gauge boson coming from an unification model, as a function of the electroweak parameters and the charges of the factors in the chain of subgroups. These charges are valid for an arbitrary Higgs sector and only depend on the branching rules of the fundamental representation and the corresponding rules for the fermionic representations of their subgroups. By assuming unification, the renormalization group equations~(RGE) allow us to calculate the electroweak parameters at low energies for most of the chains of subgroups in . From RGE and unitary conditions, we show that at low energies there must be a mixing between the gauge boson of the standard model hypercharge and the . From this, it is possible to delimit the preferred region in the parameter space for a breaking pattern in…
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