English

A model for pion-pion scattering in large-N QCD

High Energy Physics - Theory 2017-05-24 v2 High Energy Physics - Phenomenology

Abstract

Following up on recent work by Caron-Huot et al. we consider a generalization of the old Lovelace-Shapiro model as a toy model for Pi-Pi scattering satisfying (most of) the properties expected to hold in ('t Hooft's) large-N limit of massless QCD. In particular, the model has asymptotically linear and parallel Regge trajectories at positive t, a positive leading Regge intercept α0<1\alpha_0 < 1, and an effective bending of the trajectories in the negative-t region producing a fixed branch point at J=0 for t<t0<0t < t_0 < 0. Fixed (physical) angle scattering can be tuned to match the power-like (including logarithmic corrections) behavior predicted by perturbative QCD: A(s,t) sβlog(s)γF(θ)A(s,t) ~ s^{-\beta} \log(s)^{-\gamma} F(\theta). Tree-level unitarity (i.e. positivity of residues for all values of s and J) imposes strong constraints on the allowed region in the alpha_0-beta-gamma parameter space, which nicely includes a physically interesting region around α0=0.5\alpha_0 = 0.5, β=2\beta = 2 and γ=3\gamma = 3. The full consistency of the model would require an extension to multi-pion processes, a program we do not undertake in this paper.

Keywords

Cite

@article{arxiv.1701.06315,
  title  = {A model for pion-pion scattering in large-N QCD},
  author = {Gabriele Veneziano and Shimon Yankielowicz and Enrico Onofri},
  journal= {arXiv preprint arXiv:1701.06315},
  year   = {2017}
}

Comments

17 pages, 6 figures

R2 v1 2026-06-22T17:56:55.106Z