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      Commensurate Scale Relations in Quantum Chromodynamics

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          Abstract

          We use the BLM method to show that perturbatively-calculable observables in QCD can be related to each other without renormalization scale or scheme ambiguity. We define and study the commensurate scale relations. We show that the commensurate scales satisfy the renormalization group transitivity rule which ensures that predictions in PQCD are independent of the choice of an intermediate renormalization scheme. We generalize the BLM procedure to higher order. The application of this procedure to relate known physical observables in QCD gives surprisingly simple results. In particular, the annihilation ratio \(R_{e^+e^-}\) and the Bjorken sum rule for polarized electroproduction are related through simple coefficients, which reinforces the idea of a hidden symmetry between these two observables.

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          αs3correction to the Bjorken sum rule

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            Author and article information

            Journal
            04 May 1994
            Article
            10.1103/PhysRevD.51.3652
            hep-ph/9405218
            94ed5e75-32b3-4fac-b70d-28cc2fa7cba2
            History
            Custom metadata
            Phys.Rev.D51:3652-3668,1995
            35 pages (RevTeX), one PostScript figure included at the end. SLAC-PUB-6481, UMD Preprint #94-135
            hep-ph

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