arXiv:2402.18497·v3·High Energy Physics — Phenomenology
Polarized and unpolarized off-shell decay above the threshold
A. I. Hernández-Juárez🇲🇽 · R. Gaitán🇲🇽 · G. Tavares-Velasco🇲🇽
Abstract
An analysis of the off-shell decay width is presented for both unpolarized and polarized gauge bosons in the scenario with the most general vertex function, which is given in terms of two -even ( and ) and one -odd () anomalous couplings. The SM contributions to the coupling up to the one-loop level are also included. Explicit analytic results for the unpolarized and polarized square amplitudes and the four-body phase space are presented, out of which several observable quantities can be obtained straightforwardly. As far as the numerical analysis is concerned, a cross-check is performed via \texttt{MadGraph5\_aMC@NLO}, where our model was implemented with the aid of FeynRules. We then consider the most stringent bounds on anomalous complex couplings and analyze the effects of the polarizations of the gauge bosons through the polarized decay width as well as left-right and forward-backward asymmetries, which are found to be sensitive to new-physics effects. Particular focus is put on the effects of the absorptive parts of the anomalous couplings, which have been largely overlooked up to now in LHC analyses. It is found that the studied observable quantities, particularly the left-right asymmetries, can be helpful to look for effects of -violation in the coupling and set bounds on the absorptive parts. For completeness, we also analyze the case of unpolarized gauge bosons.
Comments: Close to the published version in Chinese Physics C