4.4 Review

Higher-order behaviour of two-point current correlators

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EUROPEAN PHYSICAL JOURNAL-SPECIAL TOPICS
卷 230, 期 12-13, 页码 2609-2624

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SPRINGER HEIDELBERG
DOI: 10.1140/epjs/s11734-021-00266-y

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  1. FWF Austrian Science Fund [P28535-N27]
  2. Austrian Science Fund (FWF) [P28535] Funding Source: Austrian Science Fund (FWF)

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Estimates of higher-order contributions for perturbative series in QCD are delicate but indispensable for reliable error assessments in phenomenological applications. This study investigates the Adler function and the scalar correlator, and constructs models for Borel transforms of their perturbative series. The use of the QCD coupling in the C-scheme shows certain advantages and can help reduce larger perturbative corrections.
Estimates of higher-order contributions for perturbative series in QCD, in view of their asymptotic nature, are delicate, though indispensable for a reliable error assessment in phenomenological applications. In this work, the Adler function and the scalar correlator are investigated, and models for Borel transforms of their perturbative series are constructed, which respect general constraints from the operator product expansion and the renormalisation group. As a novel ingredient, the QCD coupling is employed in the so-called C-scheme, which has certain advantages. For the Adler function, previous results obtained directly in the (MS) over bar scheme are supported. Corresponding results for the scalar correlation function are new. It turns out that the substantially larger perturbative corrections for the scalar correlator in (MS) over bar are dominantly due to this scheme choice, and can be largely reduced through more appropriate renormalisation schemes, which are easy to realise in the C-scheme.

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