English

$\tau^- \to \pi^- \eta \nu_\tau$ decay induced by QED one-loop effects

High Energy Physics - Phenomenology 2024-02-08 v1

Abstract

The τπηντ\tau^- \to \pi^-\eta\nu_{\tau} decay is forbidden in the Standard Model in the limit of exact GG-parity, it becomes a rare decay due to isospin symmetry breaking and it is very sensitive to the effects of effective scalar interactions. Since the parameters driving isospin breaking, (mdmu)/(msmˉ)(m_d-m_u)/(m_s-\bar{m}) and α\alpha, are of the same order, one may expect their GG-parity breaking effects in this decay can be of similar magnitudes. In this work, we evaluate the effects of isospin-breaking amplitudes originated from a virtual photon at one-loop in a resonance dominance model to describe photon-hadron interactions. We find that these effects can shift the leading SM predictions based on the udu-d quark mass difference by roughly 12%12\%, and should be taken into consideration in a precision comparison of theory and experiment in order to draw meaningful conclusions on New Physics. The effects in the rate of the analogous τπηντ\tau^- \to \pi^-\eta'\nu_{\tau} decay can be larger (\sim 78%78\%), under the approximations assumed in this model.

Keywords

Cite

@article{arxiv.2308.08067,
  title  = {$\tau^- \to \pi^- \eta \nu_\tau$ decay induced by QED one-loop effects},
  author = {Gerardo Hernández-Tomé and Gabriel López Castro and Diego Portillo-Sánchez},
  journal= {arXiv preprint arXiv:2308.08067},
  year   = {2024}
}

Comments

22 pages, 1 figure, 4 tables