Abstract

Bounds on the absorptive (imaginary) parts of the top quark chromomagnetic \({\hat{\mu }}_t\) and chromoelectric \({\hat{d}}_t\) dipole moments are obtained by reinterpreting the most recent LHC data in top quark pair production. It is found that both limits are of the order of \(10^{-1}-10^{-2}\), which are consistent with the standard model prediction of \(\mathrm{Im}\big [{\hat{\mu }}_t\big ]\). The effects of the absorptive parts of the top quark dipole moments are also studied via some kinematic distributions of \({\overline{t}}t\) production, though no significant deviation from the standard model leading-order contribution is observed. Our bounds can be useful to constrain the parameter space of standard model extensions.

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