arXiv:1801.00839·v3·High Energy Physics — Phenomenology
Searching for LFV Flavon decays at hadron colliders
M. Arroyo-Ureña🇲🇽 · A. Bolaños🇲🇽 · J.L. Díaz-Cruz🇲🇽 · G.Hernández-Tomé · G. Tavares-Velasco🇲🇽
Abstract
The search for Flavons with a mass of (1) TeV at current and future colliders might probe low-scale flavor models. We are interested in the simplest model that invokes the Froggatt-Nielsen (FN) mechanism with an Abelian flavor symmetry, which includes a Higgs doublet and a FN complex singlet. Assuming a CP conserving scalar potential, there are a -even and a -odd Flavons with lepton flavor violating (LFV) couplings. The former can mix with the standard-model-like Higgs boson, thereby inducing tree-level LFV Higgs interactions that may be at the reach of the LHC. We study the constraints on the parameter space of the model from low-energy LFV processes, which are then used to evaluate the Flavon decay widths and the () production cross section at hadron colliders. After imposing several kinematic cuts to reduce the SM main background, we find that for about 200-350 GeV, the decay might be at the reach of the LHC for a luminosity in the range 1-3 ab, however, a luminosity of the order of 10 ab would be required to detect the decay. On the other hand a future 100 TeV collider could probe masses as high as (10) TeV if it reaches an integrated luminosity of at least 20 ab. Therefore, the 100 TeV Collider could work as a Flavon factory.
Comments: 22 pages, 17 Figures,4 Tables. Version to be published in PRD