LAUSR.org creates dashboard-style pages of related content for over 1.5 million academic articles. Sign Up to like articles & get recommendations!

A near-minimal leptoquark model for reconciling flavour anomalies and generating radiative neutrino masses

Photo by thinkmagically from unsplash

Abstract We introduce two scalar leptoquarks, the SU(2) L isosinglet denoted ϕ ∼ (3 , 1 , −1/3) and the isotriplet φ ∼ (3 , 3 , −1/3), to explain… Click to show full abstract

Abstract We introduce two scalar leptoquarks, the SU(2) L isosinglet denoted ϕ ∼ (3 , 1 , −1/3) and the isotriplet φ ∼ (3 , 3 , −1/3), to explain observed deviations from the standard model in semi-leptonic B-meson decays. We explore the regions of parameter space in which this model accommodates the persistent tensions in the decay observables R D (∗), R K (∗) , and angular observables in b → sμμ transitions. Additionally, we exploit the role of these exotics in existing models for one-loop neutrino mass generation derived from ∆L = 2 effective operators. Introducing the vector-like quark χ ∼ (3 , 2 , −5/6) necessary for lepton-number violation, we consider the contribution of both leptoquarks to the generation of radiative neutrino mass. We find that constraints permit simultaneously accommodating the flavour anomalies while also explaining the relative smallness of neutrino mass without the need for cancellation between leptoquark contributions. A characteristic prediction of our model is a rate of muon-electron conversion in nuclei fixed by the anoma- lies in b → sμμ and neutrino mass; the COMET and Mu2e experiments will thus test and potentially falsify our scenario. The model also predicts signatures that will be tested at the LHC and Belle II.

Keywords: flavour anomalies; model; neutrino mass; radiative neutrino; neutrino

Journal Title: Journal of High Energy Physics
Year Published: 2019

Link to full text (if available)


Share on Social Media:                               Sign Up to like & get
recommendations!

Related content

More Information              News              Social Media              Video              Recommended



                Click one of the above tabs to view related content.