English

The pion-pion scattering amplitude. II: Improved analysis above $\bar{K}K$ threshold

High Energy Physics - Phenomenology 2014-11-18 v4

Abstract

We improve, in the energy region between KˉK\bar{K}K threshold and  1.4\sim~1.4 GeV, the energy-dependent phase shift analysis of ππ\pi\pi scattering presented in a previous paper. For the S0 wave we have included more data above KˉK\bar{K}K threshold and we have taken into account systematically the elasticity data on the reaction ππKˉK\pi\pi\to\bar{K}K. We here made a coupled channel fit. For the D0 wave we have considered information on low energy parameters, and imposed a better fit to the f2f_2 resonance. For both waves the expressions we now find are substantially more precise than the previous ones. We also provide slightly improved D2 and P waves, including the estimated inelasticity for the first, and a more flexible parametrization between 1 and 1.42 GeV for the second. The accuracy of our amplitudes is now such that it requires a refinement of the Regge analysis, for s1/21.42s^{1/2}\geq1.42 GeV, which we also carry out. We show that this more realistic input produces ππ\pi\pi scattering amplitudes that satisfy better forward dispersion relations, particularly for π0π0\pi^0\pi^0 scattering.

Keywords

Cite

@article{arxiv.hep-ph/0603170,
  title  = {The pion-pion scattering amplitude. II: Improved analysis above $\bar{K}K$ threshold},
  author = {R. Kaminski and J. R. Pelaez and F. J. Yndurain},
  journal= {arXiv preprint arXiv:hep-ph/0603170},
  year   = {2014}
}

Comments

Plain TeX. 12 figures. Minor anomaly in the K-matrix fit corrected by moving matching point to 932 MeV, and pole $M_1$ to 910.6 MeV. Results unaltered