arXiv · 2510.16119
A new determination of higher-order QCD corrections to hadronic $\tau$ decays
Abstract
We employ \textit{Levin-type sequence transformations} to accelerate the convergence of the perturbative fixed-order expansion of the QCD correction $\delta^{(0)}$ in terms of the strong coupling $\alpha_s$. The method efficiently resums the series, yielding a stable and self-consistent determination of higher-order QCD corrections to hadronic $\tau$ decays, consistent with existing results. We find $\delta^{(0)}_{\text{Levin-FOPT}} = 0.2089 \pm 0.0040 \, \pm 0.0060_{\alpha_s} \, $, and predict $ c_{5,1} = 278^{+27}_{-19}, \quad c_{6,1} = 3375^{+489}_{-209}, \quad c_{7,1} = (2.03^{+0.41}_{-0.25}) \times 10^4. $ Our results demonstrate that Levin-type transformations provide an efficient framework for analyzing asymptotic perturbative series, and studying the higher order perturbative behaviour of the hadronic $\tau$ decays.
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Gauhar Abbas, Vartika Singh. 2025-10-17. A new determination of higher-order QCD corrections to hadronic $\tau$ decays. https://doi.org/10.1016/j.physletb.2026.140156
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