English

Extraction of $\alpha_s$ using Borel-Laplace sum rules for tau decay data

High Energy Physics - Phenomenology 2022-03-01 v1

Abstract

Double-pinched Borel-Laplace sum rules are applied to ALEPH τ\tau-decay data. For the leading-twist (D=0D=0) Adler function a renormalon-motivated extension is used, and the 5-loop coefficient is taken to be d4=275±63d_4=275 \pm 63. Two D=6D=6 terms appear in the truncated OPE (D6D \leq 6) to enable cancellation of the corresponding renormalon ambiguities. Two variants of the fixed order perturbation theory, and the inverse Borel transform, are applied to the evaluation of the D=0D=0 contribution. Truncation index NtN_t is fixed by the requirement of local insensitivity of the momenta a(2,0)a^{(2,0)} and a(2,1)a^{(2,1)} under variation of NtN_t. The averaged value of the coupling obtained is αs(mτ2)=0.32350.0126+0.0138\alpha_s(m_{\tau}^2)=0.3235^{+0.0138}_{-0.0126} [αs(MZ2)=0.1191±0.0016\alpha_s(M_Z^2)=0.1191 \pm 0.0016]. The theoretical uncertainties are significantly larger than the experimental ones.

Keywords

Cite

@article{arxiv.2202.13178,
  title  = {Extraction of $\alpha_s$ using Borel-Laplace sum rules for tau decay data},
  author = {César Ayala and Gorazd Cvetič and Diego Teca},
  journal= {arXiv preprint arXiv:2202.13178},
  year   = {2022}
}

Comments

4 pages, 1 figure, based on a presentation at: "alphas-2022: Workshop on precision measurements of the QCD coupling constant," January 31 - February 4, 2022, ECT* Trento, Italy; written for the Snowmass-2022 White Paper (The strong coupling constant: State of the art and the decade ahead)