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Contributions of effective theories with linearly realized and strongly interacting Higgs sectors to the process e+e- → W+W-

1996/01/12 by R. Szalapski, Rob Szalapski, Szalapski, Rob
Computer Science · Physics and Astronomy · Social Sciences · #Distributed and Parallel Computing Systems #International Science and Diplomacy #Particle physics theoretical and experimental studies #hep-ph

paper · pdf · doi:10.48550/arxiv.hep-ph/9601251

13 pages, .tex file and one .ps figure submitted in .uu form, \documentstyle[preprint,aps,floats,psfig,epsf,subeqn,rotate,eqsecnum]{revtex} postscript version available via anonymous ftp from ftp://ftp.kek.jp/kek/preprints/TH/TH-466. Talk given at the 1995 Workshop on Physics and Experiments with Linear Colliders, Morioka-Appi, Iwate, Japan, 8-12 September 1995

Abstract

Previous form-factor-based analyses of e+e-→ W+W- have focused upon non-standard contributions to the WWZ and WWγ vertices. A more complete form-factor-based formalism is presented which allows for more general corrections, including t-channel corrections. The form factors are then calculated from an effective Lagrangian. Because the existence or non-existence of a light physical Higgs boson has not yet been established, both a linearly realized and a non-linearly realized effective Lagrangian are employed. In either scenario deviations from the Standard Model occur not only in W-pair production, but in other sectors as well. Effects in W-pair production are related to effects detected/constrained by the electroweak precision measurements. With either realization of the symmetry-breaking sector seven operators contribute to the process e+e-→ W+W-. In the linear (non-linear) realization, four (three) of these operators are already stringently constrained via their contributions to processes with four external fermions. As a result the parameter space which must be explored is manageable.

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