Guided by the large-N-C limit of QCD, we construct the most general chiral resonance Lagrangian that can generate chiral low-energy constants up to O(p(6)). By integrating out the resonance fields, the low-energy constants are parametrized in terms of resonance masses and couplings. Information on those couplings and on the low-energy constants can be extracted by analysing QCD Green functions of currents both for large and small momenta. The chiral resonance theory generates Green functions that interpolate between QCD and chiral perturbation theory. As specific examples we consider the (VAP) and (SPP) Green functions
We review the status of the coupling constants of chiral Lagrangians in the meson sector, the so-cal...
We present a dispersive method which allows to investigate the low-energy couplings of chiral pertur...
We have recently completed the one loop calculation of meson-meson scattering within Chiral Perturba...
Guided by the large-N-C limit of QCD, we construct the most general chiral resonance Lagrangian that...
Guided by the large-NC limit of QCD, we construct the most general chiral resonance Lagrangian that ...
I discuss the recent attempts to build an effective chiral Lagrangian incorporating massive resonanc...
We analyse the three-point function of vector, axial-vector and pseudoscalar currents. In the spiri...
Chiral low-energy constants (LECs) carry the information of shortdistance dynamics involving heavier...
The basic ideas and methods of chiral perturbation theory are briefly reviewed. I discuss the recent...
AbstractUsing a sequence of rational approximants and the large-Nc limit of QCD, we estimate the val...
Within the resonance theory involving scalars and pseudoscalars, resonance saturation at NLO in the ...
The progress in determining the coupling constants of mesonic chiral Lagrangians is reviewed, with e...
In this doctoral thesis, we study all the relevant two- and three-point Green functions of the chira...
AbstractThe anomalous 〈VVP〉 Green function and related form-factors (π0→γ⁎γ⁎ and τ−→X−ντ vector form...
We study the mass, width and couplings of the lightest resonance multiplet with I(J(PC)) = 1(1(--)) ...
We review the status of the coupling constants of chiral Lagrangians in the meson sector, the so-cal...
We present a dispersive method which allows to investigate the low-energy couplings of chiral pertur...
We have recently completed the one loop calculation of meson-meson scattering within Chiral Perturba...
Guided by the large-N-C limit of QCD, we construct the most general chiral resonance Lagrangian that...
Guided by the large-NC limit of QCD, we construct the most general chiral resonance Lagrangian that ...
I discuss the recent attempts to build an effective chiral Lagrangian incorporating massive resonanc...
We analyse the three-point function of vector, axial-vector and pseudoscalar currents. In the spiri...
Chiral low-energy constants (LECs) carry the information of shortdistance dynamics involving heavier...
The basic ideas and methods of chiral perturbation theory are briefly reviewed. I discuss the recent...
AbstractUsing a sequence of rational approximants and the large-Nc limit of QCD, we estimate the val...
Within the resonance theory involving scalars and pseudoscalars, resonance saturation at NLO in the ...
The progress in determining the coupling constants of mesonic chiral Lagrangians is reviewed, with e...
In this doctoral thesis, we study all the relevant two- and three-point Green functions of the chira...
AbstractThe anomalous 〈VVP〉 Green function and related form-factors (π0→γ⁎γ⁎ and τ−→X−ντ vector form...
We study the mass, width and couplings of the lightest resonance multiplet with I(J(PC)) = 1(1(--)) ...
We review the status of the coupling constants of chiral Lagrangians in the meson sector, the so-cal...
We present a dispersive method which allows to investigate the low-energy couplings of chiral pertur...
We have recently completed the one loop calculation of meson-meson scattering within Chiral Perturba...