English

LHC Signatures of $\tau$-Flavoured Vector Leptoquarks

High Energy Physics - Phenomenology 2022-09-07 v2

Abstract

We consider the phenomenological signatures of Simplified Models of Flavourful Leptoquarks, whose Beyond-the-Standard Model (SM) couplings to fermion generations occur via textures that are well motivated from a broad class of ultraviolet flavour models (which we briefly review). We place particular emphasis on the study of the vector leptoquark Δμ\Delta_\mu with assignments (3,1,2/3)\left({\bf{3}}, {\bf{1}}, 2/3 \right) under the SM's gauge symmetry, SU(3)C×SU(2)L×U(1)YSU(3)_C \times SU(2)_L \times U(1)_Y, which has the tantalising possibility of explaining both RK()\mathcal{R}_{K^{(\star)}} and RD()\mathcal{R}_{D^{(\star)}} anomalies. Upon performing global likelihood scans of the leptoquark's coupling parameter space, focusing in particular on models with tree-level couplings to a single charged lepton species, we then provide confidence intervals and benchmark points preferred by low(er)-energy flavour data. Finally, we use these constraints to further evaluate the (promising) Large Hadron Collider (LHC) detection prospects of pairs of τ\tau-flavoured Δμ\Delta_\mu, through their distinct (a)symmetric decay channels. Namely, we consider direct third-generation leptoquark and jets plus missing-energy searches at the LHC, which we find to be complementary. Depending on the simplified model under consideration, the direct searches constrain the Δμ\Delta_\mu mass up to 1500-1770 GeV when the branching fraction of Δμ\Delta_\mu is entirely to third-generation quarks (but are significantly reduced with decreased branching ratios to the third generation), whereas the missing-energy searches constrain the mass up to 1150-1700 GeV while being largely insensitive to the third-generation branching fraction.

Keywords

Cite

@article{arxiv.2112.12129,
  title  = {LHC Signatures of $\tau$-Flavoured Vector Leptoquarks},
  author = {Jordan Bernigaud and Monika Blanke and Ivo de Medeiros Varzielas and Jim Talbert and José Zurita},
  journal= {arXiv preprint arXiv:2112.12129},
  year   = {2022}
}

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