Analytic Perturbation Theory for Practitioners and Upsilon Decay

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Within the ghost-free Analytic Perturbation Theory (APT), devised in the last decade for low energy QCD, simple approximations are proposed for 3-loop analytic couplings and their effective powers, in both the space-like (Euclidean) and time-like (Minkowskian) regions, accurate enough in the large range (1--100 GeV) of current physical interest.\par Effectiveness of the new Model is illustrated by the example of $Υ(1\mathrm{S})$ decay where the standard analysis gives $α_s(M_Υ)=0.170\pm 0.004$ value that is inconsistent with the bulk of data for $α_s$. Instead, we obtain $α_s^{Mod}(M_Υ)=0.185\pm 0.005$ that corresponds to $α_s^{Mod}(M_Z)=0.120\pm 0.002 $ that is close to the world average.\par The issue of scale uncertainty for $Υ$ decay is also discussed.
12 pages, 0 figures. Model slightly modified to increase its accuracy. Numerical results upgraded, references added. The issue of scale uncertainty is discussed

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