Addressing the ${\mathbf R_{D^{(*)}}}$ anomalies with an ${\mathbf S_1}$ leptoquark from $\mathbf{SO(10)}$ grand unification
Abstract
Motivated by the anomalies, we investigate an grand unification scenario where a charge scalar leptoquark () remains as the only new physics candidate at the TeV scale. This leptoquark along with the Standard Model (SM) Higgs doublet originates from the same 10-dimensional real scalar multiplet in the grand unification framework taking its mass close to the electroweak scale. We explicitly show how the gauge coupling unification is achieved with only one intermediate symmetry-breaking scale at which the Pati-Salam gauge group is broken into the SM group. We investigate the phenomenological implications of our scenario and show that an with a specific Yukawa texture can explain the anomalies. We perform a multiparameter scan considering the relevant flavour constraints on , , and as well as the constraint coming from the decay and the latest resonance search data at the LHC. Our analysis shows that a single leptoquark solution to the observed anomalies with is still a viable solution.
Keywords
Cite
@article{arxiv.1902.08108,
title = {Addressing the ${\mathbf R_{D^{(*)}}}$ anomalies with an ${\mathbf S_1}$ leptoquark from $\mathbf{SO(10)}$ grand unification},
author = {Ufuk Aydemir and Tanumoy Mandal and Subhadip Mitra},
journal= {arXiv preprint arXiv:1902.08108},
year = {2020}
}
Comments
Minor typos fixed. Similar to the journal version