Renormalization Group Improved Bottom Mass from Υ Sum Rules at NNLL Order

semanticscholar(2021)

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摘要
We determine the bottom quark mass from non-relativistic large-n Υ sum rules with renormalization group improvement at next-to-next-to-leading logarithmic order. We compute the theoretical moments within the vNRQCD formalism and account for the summation of powers of the Coulomb singularities as well as of logarithmic terms proportional to powers of αs ln(n). The renormalization group improvement leads to a substantial stabilization of the theoretical moments compared to previous fixed-order analyses, which did not account for the systematic treatment of the logarithmic αs ln(n) terms, and allows for reliable single moment fits. For the current world average of the strong coupling (αs(MZ) = 0.1183± 0.0010) we obtain M1S b = 4.755± 0.057pert± 0.009αs ± 0.003exp GeV for the bottom 1S mass and mb(mb) = 4.235± 0.055pert ± 0.003exp GeV for the bottom MS mass, where we have quoted the perturbative error and the uncertainties from the strong coupling and the experimental data. a Electronic address: Andre.Hoang@univie.ac.at b Electronic address: Pedro.Ruiz@ific.uv.es c Electronic address: maximilian.stahlhofen@desy.de 1 ar X iv :1 20 9. 04 50 v2 [ he pph ] 5 N ov 2 01 2
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