English

QED Corrections to $B^-\toτ^-\barν_τ$

High Energy Physics - Phenomenology 2026-07-14 v1

Abstract

Using a sequence of effective field theories (EFTs), we calculate the rate for the leptonic decay Bτνˉτ(γ)B^-\to\tau^-\bar\nu_\tau(\gamma) including real and virtual QED corrections, with a cut EcutΛQCDE_{\rm cut}\ll\Lambda_{\rm QCD} imposed on electromagnetic radiation in the BB-meson rest frame. We establish a factorization theorem for the rate and evaluate it at O(α)\mathcal{O}(\alpha), resumming the leading logarithmic corrections to all orders in perturbation theory. The large mass mτm_\tau allows us to treat the tau lepton as a heavy fermion below μmBmτ\mu\sim m_B\sim m_\tau, leading to an EFT construction that is structurally different and noticeably simpler than that for the muon case. In particular, hadron-structure dependent QED corrections can be described in terms of QED-induced BτB^-\to\tau^- form factors, which should be calculable on the lattice. Our analysis includes the leading ΛQCD/mτ\Lambda_{\rm QCD}/m_\tau corrections as well as the leading corrections in Ecut/ΛQCDE_{\rm cut}/\Lambda_{\rm QCD}. We show that contributions of the form ΛQCDmB/mτ2\Lambda_{\rm QCD}m_B/m_\tau^2, which are naively sizable, cancel among each other. Contrary to the muon channel, structure-dependent corrections involving BBγBB^\ast\gamma transitions are numerically negligible for the tau case. The remaining logarithmic dependence on EcutE_\mathrm{cut} is mild. We estimate that the present uncertainty in the calculation of the structure-dependent QED corrections is about 0.5\% of the rate. As a byproduct, we present a state-of-the-art prediction for the lepton flavor universality ratio of the tau and muon channels.

Cite

@article{arxiv.2607.13144,
  title  = {QED Corrections to $B^-\toτ^-\barν_τ$},
  author = {Claudia Cornella and Max Ferré and Matthias König and Matthias Neubert},
  journal= {arXiv preprint arXiv:2607.13144},
  year   = {2026}
}

Comments

25 pages, 4 figures