English

High Energy Photon-Photon Collisions -

High Energy Physics - Phenomenology 2009-09-25 v1

Abstract

The collisions of high energy photons produced at an electron-positron collider provide a comprehensive laboratory for testing QCD, electroweak interactions, and extensions of the Standard Model. The luminosity and energy of the colliding photons produced by back-scattering laser beams is expected to be comparable to that of the primary e+ee^+e^- collisions. In this overview, we shall focus on tests of electroweak theory in photon-photon annihilation, particularly γγW+W\gamma\gamma \rightarrow W^+ W^-, γγ\gamma\gamma \rightarrow Higgs bosons, and higher-order loop processes, such as γγγγ,Zγ\gamma\gamma \rightarrow \gamma\gamma, Z \gamma and ZZ.ZZ. Since each photon can be resolved into a W+WW^+ W^- pair, high energy photon-photon collisions can also provide a remarkably background-free laboratory for studying WWWW collisions and annihilation. We also review high energy γγ\gamma\gamma tests of quantum chromodynamics, such as the scaling of the photon structure function, ttˉt \bar t production, mini-jet processes, and diffractive reactions.

Keywords

Cite

@article{arxiv.hep-ph/9407362,
  title  = {High Energy Photon-Photon Collisions -},
  author = {Stanley J. Brodsky and SLAC and Peter M. Zerwas and DESY},
  journal= {arXiv preprint arXiv:hep-ph/9407362},
  year   = {2009}
}

Comments

uses PHYZZX, 52 pages, 30 figures (available upon request), SLAC-PUB-6571

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