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Form-factors and current correlators: chiral couplings L₁0(mu) and C₈7(mu) at NLO in 1/N(C)

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arxiv 0803.1567 v1 pith:6LRS7O4R submitted 2008-03-11 hep-ph

Form-factors and current correlators: chiral couplings L₁0(mu) and C₈7(mu) at NLO in 1/N(C)

classification hep-ph
keywords chiralcorrelatorsresonanceaxial-vectorcouplingsexpansionvectoranalyzed
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Using the resonance chiral theory Lagrangian, we perform a calculation of the vector and axial-vector two-point functions at the next-to-leading order (NLO) in the 1/N(C) expansion. We have analyzed these correlators within the single-resonance approximation and have also investigated the corrections induced by a second multiplet of vector and axial-vector resonance states. Imposing the correct QCD short-distance constraints, one determines the difference of the two correlators Pi(t) = Pi_VV(t)- Pi_AA(t) in terms of the pion decay constant and resonance masses. Its low momentum expansion fixes then the low-energy chiral couplings L_10 and C_87 at NLO, keeping full control of their renormalization scale dependence. At mu_0=0.77 GeV, we obtain L_10(mu_0) = (-4.4 \pm 0.9)10^{-3} and C_87^r(mu_0)=(3.1 \pm 1.1)10^{-5}.

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