arXiv · hep-ph/9501318
Two-Loop Analysis of Vector Current Propagators in Chiral Perturbation Theory
Abstract
We perform a calculation of the isospin and hypercharge vector current propagators ($Δ_{V33}^{μν}(q^2)$ and $Δ_{V88}^{μν}(q^2)$) to two loops in chiral perturbation theory. The analysis is carried out with straightforward Feynman diagram methods by making appropriate use of external vector sources. Counterterms from the ${\cal O}(q^6)$ chiral lagrangian, required to absorb divergences and scale dependence encountered at the two-loop level, are constructed. Our final results are finite, covariant, and scale-independent. Several applications are described, including a comparison of the two-loop isospin vector spectral function with data and the construction of new chiral sum rules.
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Eugene Golowich, Joachim Kambor. 1995-05-23. Two-Loop Analysis of Vector Current Propagators in Chiral Perturbation Theory. https://doi.org/10.1016/0550-3213(95)00234-j
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