On the three-point order parameters of chiral symmetry breaking
arXiv:2206.02579 · doi:10.1007/JHEP03(2023)118
Abstract
The nonlocal order parameters of the QCD chiral symmetry breaking, namely the nonanomalous three-point Green functions of the quark bilinears belonging to the odd intrinsic parity sector, are studied within the framework of the Resonance chiral theory. The general form of these correlators is then matched with various high energy constraints: the leading and sub-leading OPE for all three momenta simultaneously large, the leading OPE for two momenta large and the leading and sub-leading Brodsky-Lepage limit for the corresponding transition form factor. In order to satisfy these constraints, the Resonance chiral theory has to be enlarged with additional resonance multiplets and with higher derivative operators as well. We discuss a minimal extension of this kind in detail and present corresponding correlators in a closed form. The remaining free parameters are then constrained from lattice data. As a phenomenological application, we discuss the pion-pole contribution to the muon and the decay .
59 pages, 11 figures, ver2: some changes in the text and analysis, version accepted by JHEP
References in corpus (10)
- Towards a consistent estimate of the chiral low-energy constants
- A Rational Approach to Resonance Saturation in large-Nc QCD
- Rare decay pi0 -> e+e-: theory confronts KTeV data
- Asymptotic behavior of meson transition form factors
- Rare decay : on corrections beyond the leading order
- Modeling interactions of photons with pseudoscalar and vector mesons
- On different lagrangian formalisms for vector resonances within chiral perturbation theory
- The ChPT: top-down and bottom-up
- OPE-RchiT matching at order alpha_s: hard gluonic corrections to three-point Green functions
- Resonance saturation of the chiral couplings at NLO in 1/Nc