English

Semitauonic $b$-hadron decays: A lepton flavor universality laboratory

High Energy Physics - Experiment 2022-12-07 v2 High Energy Physics - Phenomenology

Abstract

The study of lepton flavor universality violation (LFUV) in semitauonic bb-hadron decays has become increasingly important in light of longstanding anomalies in their measured branching fractions, and the very large datasets anticipated from the LHC and Belle II. In this review, we undertake a comprehensive survey of the experimental environments and methodologies for semitauonic LFUV measurements at the BB-factories and LHCb, along with a concise overview of the theoretical foundations and predictions for a wide range of semileptonic decay observables. We proceed to examine the future prospects to control systematic uncertainties down to the percent level, matching the precision of Standard Model (SM) predictions. Furthermore, we discuss new perspectives and caveats on combinations of the LFUV data and revisit the world averages for the R(D()){\cal R}(D^{(*)}) ratios. Here we demonstrate that different treatments for the correlations of uncertainties from DD^{**} excited states can vary the current 3σ3\sigma tension with the SM within a 1σ1\sigma range. Prior experimental overestimates of DτνD^{**}\tau\nu contributions may further exacerbate this. The precision of future measurements is also estimated; their power to exploit full differential information, and solutions to the inherent difficulties in self-consistent new physics interpretations of LFUV observables, are briefly explored.

Keywords

Cite

@article{arxiv.2101.08326,
  title  = {Semitauonic $b$-hadron decays: A lepton flavor universality laboratory},
  author = {Florian U. Bernlochner and Manuel Franco Sevilla and Dean J. Robinson and Guy Wormser},
  journal= {arXiv preprint arXiv:2101.08326},
  year   = {2022}
}

Comments

Published version plus an additional subsection on the new R(Lc) results