English

$\gamma \gamma$ cross-sections and $\gamma \gamma$ colliders

High Energy Physics - Phenomenology 2009-11-07 v1

Abstract

We summarize the predictions of different models for total γγ\gamma \gamma cross-sections. The experimentaly observed rise of σγγ\sigma_{\gamma \gamma} with sγγ\sqrt{s_{\gamma \gamma}}, faster than that for σpˉp\sigma_{\bar p p}, σγp\sigma_{\gamma p} is in agreement with the predictions of the Eikonalized Minijet Models as opposed to those of the Regge-Pomeron models. We then show that a measurement of σγγ\sigma_{\gamma \gamma} with an accuracy of 89\lessapprox 8-9% (6-7%) is necessary to distinguish among different Regge-Pomeron type models (among the different parametrisations of the EMM models) and a precision of \lessapprox 20% is required to distinguish among the predictions of the EMMs and of those models which treat like 'photon like a proton', for the energy range 300<sγγ<500300 < \sqrt{s_{\gamma \gamma}} < 500 GeV. We further show that the difference in model predictions for σγγ\sigma_{\gamma \gamma} of about a factor 2 at sγγ=700\sqrt{s_{\gamma \gamma}} = 700 GeV reduces to \sim 30% when folded with bremsstrahlung γ\gamma spectra to calculate σ(e+ee+eγγe+eX)\sigma ({e^+e^- \to e^+e^-\gamma \gamma \to e^+e^-X}). We point out then the special role that γγ\gamma \gamma colliders can play in shedding light on this

Keywords

Cite

@article{arxiv.hep-ph/0101320,
  title  = {$\gamma \gamma$ cross-sections and $\gamma \gamma$ colliders},
  author = {Rohini M. Godbole and G. Pancheri},
  journal= {arXiv preprint arXiv:hep-ph/0101320},
  year   = {2009}
}

Comments

11 pages, 8 figures, LaTeX, uses elsart.cls. Talk to appear in the proceedings of the the International Workshop on High Energy Photon Colliders, DESY, Hamburg, June 2000

R2 v1 2026-07-22T13:31:57.954Z