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Effect of Fermionic Operators on the Gauge Legacy of the LHC Run I

Published 28 May 2018 in hep-ph | (1805.11108v2)

Abstract: We revisit the extraction of the triple electroweak gauge boson couplings from the Large Hadron Collider Run I data on the W<sup>+W<sup>−W<sup>+W<sup>- and W<sup>±</sup>ZW<sup>\pm</sup> Z productions when the analysis also contains additional operators that modify the couplings of the gauge bosons to light quarks and the gauge boson self-energies. We work in the framework of effective Lagrangians where we consider dimension-six operators and perform a global fit to consistently take into account the bounds on these additional operators originating from the electroweak precision data. We show that the constraints on the Wilson coefficients fB/Λ<sup>2f_B/\Lambda<sup>2 and fW/Λ<sup>2f_W/\Lambda<sup>2 are modified when we include the additional operators while the limits on fWWW/Λ<sup>2f_{WWW}/\Lambda<sup>2 remain unchanged.

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