English

Getting chirality right: single scalar leptoquark solutions to the $(g-2)_{e,\mu}$ puzzle

High Energy Physics - Phenomenology 2020-11-04 v4

Abstract

We identify the two scalar leptoquarks capable of generating sign-dependent contributions to leptonic magnetic moments, R2(3,2,7/6)R_2\sim (\mathbf{3}, \mathbf{2}, 7/6) and S1(3,1,1/3)S_1\sim (\mathbf{3}, \mathbf{1}, -1/3), as favoured by current measurements. We consider the case in which the electron and muon sectors are decoupled, and real-valued Yukawa couplings are specified using an up-type quark mass-diagonal basis. Contributions to Δae\Delta a_e arise from charm-containing loops and Δaμ\Delta a_\mu from top-containing loops -- hence avoiding dangerous LFV constraints, particularly from μeγ\mu \to e \gamma. The strongest constraints on these models arise from contributions to the Z leptonic decay widths, high-pTp_T leptonic tails at the LHC, and from (semi)leptonic kaon decays. To be a comprehensive solution to the (g2)e/μ(g-2)_{e/\mu} puzzle we find that the mass of either leptoquark must be 65\lesssim 65 TeV. This analysis can be embedded within broader flavour anomaly studies, including those of hierarchical leptoquark coupling structures. It can also be straightforwardly adapted to accommodate future measurements of leptonic magnetic moments, such as those expected from the Muon g2g-2 collaboration in the near future.

Keywords

Cite

@article{arxiv.2002.12544,
  title  = {Getting chirality right: single scalar leptoquark solutions to the $(g-2)_{e,\mu}$ puzzle},
  author = {Innes Bigaran and Raymond R. Volkas},
  journal= {arXiv preprint arXiv:2002.12544},
  year   = {2020}
}

Comments

13 pages, 4 figures, matches published version. Error identified in initial calculation of $\mu \to e \gamma$ which, when corrected, invalidated the top-philic coupling ansatz. Models revised to represent texture with dominant charm-loop NP contribution to $\Delta a_e$, and top-loop to $\Delta a_\mu$