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- W2079784826 endingPage "1450180" @default.
- W2079784826 startingPage "1450180" @default.
- W2079784826 abstract "We examine Lorentz-violating effects that could appear through deviations of the Standard Model gauge couplings WWgamma and WWgammagamma. These new physics effects are explored on the gamma gamma -> WW reaction at the International Linear Collider. In particular, the associated helicity amplitudes are computed in the context of the Standard Model Extension (which is a model-independent approach to CPT and Lorentz violation) and the Effective Lagrangian Model (which incorporates new physics effects that respect CPT and Lorentz violation). We perform an exhaustive study of the polarized differential cross sections to stand out effects related to Lorentz symmetry violation, where it is evidenced that the effects of Lorentz symmetry violation are more sensitive to the presence of the b constant background field. We found that for the $(pm,pm,(L,T+T,L))$ polarization state, only Standard Model Extension and Effective Lagrangian Model contribute at the lowest order, however, both types of new physics effects are clearly distinguished, being dominant the convoluted cross section of the Standard Model Extension in around 4 orders of magnitude. For this polarization state, at the last stage of operation of International Linear Collider, it is expected an integrated luminosity of 10^3 fb^{-1}, finding around of 2 events for a Lorentz-violating energy scale of 32 TeV." @default.
- W2079784826 created "2016-06-24" @default.
- W2079784826 creator A5001242243 @default.
- W2079784826 creator A5007131379 @default.
- W2079784826 creator A5009633335 @default.
- W2079784826 creator A5039564225 @default.
- W2079784826 creator A5069761829 @default.
- W2079784826 date "2014-12-20" @default.
- W2079784826 modified "2023-10-16" @default.
- W2079784826 title "Lorentz-violating effects on pair production of W bosons in photon collisions" @default.
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- W2079784826 doi "https://doi.org/10.1142/s0217751x14501802" @default.
- W2079784826 hasPublicationYear "2014" @default.