We show that a suitable setting for comparison of the low-energy representation for pion-pion scattering amplitudes, with dispersive representation for these amplitudes, is provided by certain manifestly crossing symmetric dispersion relations. We begin with a discussion of fixed-t dispersion relations and discuss the origin of crossing constraints that arise in this context when we consider resonance saturation with certain $l\geq 2$ states. We demonstrate that the approach advocated here does not require us to enforce such constraints. Our results are contrasted with those from fixed-t dispersion relations. We finally discuss the numerical import of our results
We obtain reliable $\pi\pi$ scattering amplitudes consistent with experimental data, both at low and...
The dispersion relation for forward π±π0 elastic scattering is solved by imposing consistency in the...
The relativistic amplitudes of pion photo- and electroproduction are calculated by dispersion relati...
We show that a suitable setting for comparison of the low-energy representation for pion-pion scatte...
The slow convergence of chiral perturbation theory for heavy baryons (HBChPT) suggests that any atte...
The unsubtracted dispersion relations of Chew et al. are reinterpreted as the approximate equations ...
Applying Cini-Fubini approximation to the Mandelstam representation for pion-nucleon scattering ampl...
We establish the framework for the comparison of $\pi K$ scattering amplitudes from SU(3) chiral per...
We derive the complete set of crossing symmetric forward pion-pion amplitudes with non-negative abso...
The relativistic amplitudes of pion photoproduction are evaluated by dispersion relations at t = con...
We establish the framework for the comparison of $\pi K$ scattering amplitudes from SU(3) chiral per...
The relativistic amplitudes of pion photoproduction are evaluated by dispersion relations at t = con...
Chiral symmetry provides strong constraints on hadronic matrix elements at low energy, which are mos...
Relativistic dispersion relations are used to derive equations for low-energy S-, P-, and D-wave mes...
The relativistic amplitudes of pion photoproduction are evaluated by dispersion relations at t = con...
We obtain reliable $\pi\pi$ scattering amplitudes consistent with experimental data, both at low and...
The dispersion relation for forward π±π0 elastic scattering is solved by imposing consistency in the...
The relativistic amplitudes of pion photo- and electroproduction are calculated by dispersion relati...
We show that a suitable setting for comparison of the low-energy representation for pion-pion scatte...
The slow convergence of chiral perturbation theory for heavy baryons (HBChPT) suggests that any atte...
The unsubtracted dispersion relations of Chew et al. are reinterpreted as the approximate equations ...
Applying Cini-Fubini approximation to the Mandelstam representation for pion-nucleon scattering ampl...
We establish the framework for the comparison of $\pi K$ scattering amplitudes from SU(3) chiral per...
We derive the complete set of crossing symmetric forward pion-pion amplitudes with non-negative abso...
The relativistic amplitudes of pion photoproduction are evaluated by dispersion relations at t = con...
We establish the framework for the comparison of $\pi K$ scattering amplitudes from SU(3) chiral per...
The relativistic amplitudes of pion photoproduction are evaluated by dispersion relations at t = con...
Chiral symmetry provides strong constraints on hadronic matrix elements at low energy, which are mos...
Relativistic dispersion relations are used to derive equations for low-energy S-, P-, and D-wave mes...
The relativistic amplitudes of pion photoproduction are evaluated by dispersion relations at t = con...
We obtain reliable $\pi\pi$ scattering amplitudes consistent with experimental data, both at low and...
The dispersion relation for forward π±π0 elastic scattering is solved by imposing consistency in the...
The relativistic amplitudes of pion photo- and electroproduction are calculated by dispersion relati...