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arXiv · hep-ph/9505252

Quartic Gauge Boson Couplings

Abstract

Quartic vertices provide a window into one of the most important problems in particle physics; the understanding of electroweak symmetry breaking. I survey the various processes that have been proposed to study quartic gauge boson couplings at future $e^+e^-$, $eγ$, $γγ$, $e^-e^-$, and $pp$ colliders. For the lowest dimension operators that do not include photons, it appears that the LHC will provide the most constraining measurements. However, precision measurements at high energy $e^+e^-$ colliders involving $W^+W^-$ rescattering are also quite sensitive to the effects of a strongly interacting weak interaction. For quartic couplings involving photons, $γγ$ collisions appear to be the best place to measure these couplings. Measurements using gauge boson production in $eγ$ collisions are almost as precise as the $γγ$ processes with $e^+e^-\to VVV$ about an order or magnitude less sensitive.

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BibTeXRIS

Stephen Godfrey. 1995-05-08. Quartic Gauge Boson Couplings. https://doi.org/10.1063/1.49305

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