Hadronic Couplings Via QCD Sum Rules Using Three-Point Functions: Vacuum Susceptibilities
arXiv:hep-ph/9706376 · doi:10.1103/PhysRevD.57.2847
Abstract
We develop a three-point formalism to treat vacuum susceptibilities used for the coupling of currents to hadrons within the method of QCD Sum Rules. By introducing nonlocal condensates, with the space-time structure taken from fits to experimental parton distrbutions, we show that one can treat hadronic coupling at zero or low momentum transfer as well as medium and asmptotic momentum transfers and obtain a general expression for the vacuum susceptibilities of the two-point formalism. The pion susceptibility, for which there has been a major uncertainty, is evaluated successfully with no new parameters.
Latex file, 3 Figs
References in corpus (1)
Cited by in corpus (8)
- from QCD Sum Rules
- Progress in vacuum susceptibilities and their applications to the chiral phase transition of QCD
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- Pion susceptibility of the QCD vacuum from an effective quark-quark interaction
- Mesons as qbar-q Bound States from Euclidean 2-Point Correlators in the Bethe-Salpeter Approach
- Vacuum pseudoscalar susceptibility
- Vector, Axial, Tensor and Pseudoscalar Vacuum Susceptibilities
- Calculation of some properties of the vacuum