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dc.contributor.authorSolovtsova, O.
dc.coverage.spatialSaint Petersburgru_RU
dc.date.accessioned2026-05-11T13:47:15Z
dc.date.available2026-05-11T13:47:15Z
dc.date.issued2013
dc.identifier.citationSolovtsova, O. Manifestation of quark-hadron duality via the Adler D-function / O. Solovtsova // The XXI International Workshop High Energy Physics and Quantum Field Theory, Saint Petersburg, June 23-June 30, 2013. – Saint Petersburg : Skobeltsyn Institute of Nuclear Physics, 2013. – P. 1–6.ru_RU
dc.identifier.urihttps://elib.gstu.by/handle/220612/48902
dc.description.abstractAnalyzing the hadronic contributions to various physical quantities within the method based on the variational perturbation theory we obtain that the suggested method allows us to describe well the Adler function corresponding to the e+e− annihilation and the τ-decay into hadrons, the hadronic contributions to the lepton anomalous magnetic moment, and to the running electromagnetic fine structure constant. A common feature of all these quantities is that their theoretical description contains the vector current correlator and includes the low-energy region with the scale about 1 GeV and less in which the standard perturbation theory cannot be applied. We discuss the reason for such good agreement and formulate a criterion that is satisfied by the considered quantities. It is shown that such consent may be understood if we use the concept of quark-hadron duality. If the method supports the required analytic properties, the criterion obtained ensures the equivalence of the transition from the timelike to the spaselike region.ru_RU
dc.language.isoenru_RU
dc.publisherSkobeltsyn Institute of Nuclear Physicsru_RU
dc.subjectQuarkru_RU
dc.subjectLeptonsru_RU
dc.subjectPerturbation theoryru_RU
dc.titleManifestation of quark-hadron duality via the Adler D-functionru_RU
dc.typeArticleru_RU
local.identifier.doi10.22323/1.183.0057


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