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Dynamical generation of low-energy couplings from quark-meson fluctuations

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arxiv 1901.02472 v1 pith:3NTX5TCN submitted 2019-01-08 hep-ph

classification hep-ph
keywords low-energycouplingseffectiveactionfluctuationshigher-derivativelinearmodel
verification ladder T0 review T1 audit T2 compute T3 formal
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We extend our recent computation of the low-energy limit of the linear O(4) Quark-Meson Model. The present analysis focuses on the transformation of the resulting effective action into a nonlinearly realized effective pion action, whose higher-derivative interaction terms are parametrized by so-called low-energy couplings. Their counterparts in the linear model are determined from the Functional Renormalization Group flow of the momentum-dependent four-pion vertex, which is calculated in a fully O(4)-symmetric approximation by including also momentum-dependent {\sigma}{\pi} interactions as well as {\sigma} self-interactions. Consequently, these higher-derivative couplings are dynamically generated solely from quark and meson fluctuations, initialized at a hadronic scale. Despite our restriction to low-energy degrees of freedom, we find that the qualitative features of the fluctuation dynamics allow us to comment on the range of validity and on appropriate renormalization scales for purely pionic effective models.

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  1. DoFun 3.0: Functional equations in Mathematica

    hep-ph 2019-08 accept novelty 4.0 of 10

    DoFun 3.0 extends the Mathematica package DoFun with automatic derivation of correlation functions of composite operators, plus workflow tools and a public GitHub repository.

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