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UV contributions to energy of a static quark-antiquark pair in large $\beta_0$ approximation

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arxiv 1904.02563 v2 pith:ND67IEWX submitted 2019-04-04 hep-ph

classification hep-ph
keywords lambdaoverlinepartapproximationbetaenergypairpredictable
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The total energy of a static quark-antiquark pair $E_{\rm tot}(r)=2m_{\rm pole}+V_{\rm QCD}(r)$ is known to be predictable up to ${\cal O}(\Lambda_{\rm QCD}^3 r^2)$ and ${\cal O}(\frac{\Lambda_{\rm QCD}^3}{\overline{m}^2})$ renormalon uncertainties in the large-$\beta_0$ approximation, after canceling ${\cal O}(\Lambda_{\rm QCD})$ renormalons. We compute the predictable part (genuine UV part) in terms of the $\overline{\rm MS}$ mass $\overline{m}$, extending a recently-proposed method which conforms with OPE. In particular the $r$-independent part is determined. The result would help understanding the nature of $E_{\rm tot}(r)$ in the context of OPE with renormalon subtraction.

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Cited by 1 Pith paper

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  1. Hyperasymptotic approximation to the top, bottom and charm pole mass

    hep-ph 2019-09 conditional novelty 6.0 of 10

    PV-regulated pole mass expansions produce a 28 MeV purely theoretical error for the top quark mass conversion at 163 GeV, with lattice cross-checks for the bottom and charm sectors.

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