English

New physics in $\text{b} \rightarrow \text{s}$ transitions in the MF331 model

High Energy Physics - Phenomenology 2023-04-26 v1

Abstract

There are two sources that help to explain the RK\text{R}_\text{K}, RK\text{R}_{\text{K}^*} anomalies in the MF331 model. The first is non-LFUV couplings of the new neutral gauge boson Z\text{Z}^{\prime} with leptons, gZ(e)gZ(μ,τ)\text{g}^{\text{Z}^\prime}(e)\neq \text{g}^{\text{Z}^\prime}(\mu,\tau), which causes the RK\text{R}_\text{K}, RK\text{R}_{\text{K}^*} anomalies via Z\text{Z}^\prime-penguin diagrams involving newly charged gauge bosons Xμ±\text{X}^{\pm}_{\mu}, and exotic U-quarks. The box diagram's contribution is the second source, which induced only the first lepton generation. We show that the penguin diagrams can not explain RK\text{R}_\text{K}, RK\text{R}_{\text{K}^*} anomalies, and that the box diagram is required. The experimental constraints for RK\text{R}_\text{K} and RK\text{R}_{\text{K}^*} result in new particle mass degeneracy. The contributions of NP to the branching ratios Br(Bμ+μ),Br(bsγ)\text{Br}(\text{B}\to \mu^+ \mu^-), \text{Br}(\text{b}\to s \gamma) predict results that agree with the experimental limits in the allowed region of the NP scale.

Keywords

Cite

@article{arxiv.2205.02995,
  title  = {New physics in $\text{b} \rightarrow \text{s}$ transitions in the MF331 model},
  author = {N. T. Duy and P. N. Thu and D. T. Huong},
  journal= {arXiv preprint arXiv:2205.02995},
  year   = {2023}
}

Comments

25 pages, 7 figures