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arXiv · 1810.05648

Constraining $A_4$ Leptonic Flavour Model Parameters at Colliders and Beyond

Abstract

The observed pattern of mixing in the neutrino sector may be explained by the presence of a non-Abelian, discrete flavour symmetry broken into residual subgroups at low energies. Many flavour models require the presence of Standard Model singlet scalars which can promptly decay to charged leptons in a flavour-violating manner. We constrain the model parameters of a generic $A_4$ leptonic flavour model using a synergy of experimental data including limits from charged lepton flavour conversion, an 8 TeV collider analysis and constraints from the anomalous magnetic moment of the muon. The most powerful constraints derive from the MEG collaborations' limit on Br$\left(\mu\to e\gamma\right)$ and the reinterpretation of an 8 TeV ATLAS search for anomalous productions of multi-leptonic final states. We quantify the exclusionary power of each of these experiments and identify regions where the constraints from collider and MEG experimental data are complementary.

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Lukas Heinrich, Holger Schulz, Jessica Turner, Ye-Ling Zhou. 2018-10-12. Constraining $A_4$ Leptonic Flavour Model Parameters at Colliders and Beyond. https://doi.org/10.1007/jhep04(2019)144

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