English

The role of non-universal $Z$ couplings in explaining the $V_{us}$ anomaly

High Energy Physics - Phenomenology 2021-09-22 v2 High Energy Physics - Experiment

Abstract

The tension among measurements of VusV_{us} from different channels, the so-called Cabibbo Angle Anomaly, can be interpreted as a signal of lepton flavor universality (LFU) violation in the WW boson couplings. We investigate this issue in the framework of effective field theory, keeping the gauge structure of the Standard Model (SM) unchanged. We introduce gauge-invariant dimension-6 effective operators that couple the Higgs doublet to leptons, thereby giving non-universal tree-level contributions to the couplings of electroweak gauge bosons. Due to the SU(2)LSU(2)_L gauge symmetry, a tension arises between the VusV_{us} measurements that are affected by new WW couplings, and the electroweak precision measurements, which are also affected by the new ZZ couplings. We show that this tension can be alleviated by allowing additional sources of gauge-invariant couplings of ZZ boson to left- or right-handed leptons, and find the optimal regions indicated by the current data in the Wilson-coefficient space. We illustrate our model-independent results with the examples of minimal extensions of the SM involving the vector-like lepton (VLL) models. We point out that dimension-6 operators coupling the Higgs doublet to leptons can affect the rate of hττh \to \tau \tau decay significantly in general, however this effect is restricted to less than a per cent level for the minimal VLL models.

Keywords

Cite

@article{arxiv.2010.12009,
  title  = {The role of non-universal $Z$ couplings in explaining the $V_{us}$ anomaly},
  author = {Ashutosh Kumar Alok and Amol Dighe and Shireen Gangal and Jacky Kumar},
  journal= {arXiv preprint arXiv:2010.12009},
  year   = {2021}
}

Comments

26 pages, 6 figures; Figures/Results for non-minimal EFT scenarios updated