Search for top quark flavor-changing neutral currents in multilepton final states using an effective field theory approach in proton--proton collisions at s = 13 TeV
CMS Collaboration
Abstract
We present a search for flavor-changing neutral current (FCNC) interactions involving the top quark in production and decay. This analysis establishes the first global search in the top quark FCNC sector within the standard model effective field theory where all relevant operators are constrained simultaneously in a single fit to data, providing a framework for future measurements and combinations at the LHC. The analysis uses proton-proton collision data collected at s = 13 TeV by the CMS detector, corresponding to an integrated luminosity of 138 fb-1. Signal contributions are probed in final states with two same-sign charged leptons or three leptons. Multivariate discriminants are used to separate signal from background, and their distributions enter a likelihood fit to determine 95% confidence intervals for 24 Wilson coefficients. No evidence for FCNC interactions is observed. These results provide the first simultaneous constraints on the complete operator set and place the most stringent limits to date on FCNC top quark decay branching fractions via two-quark-two-lepton interactions.
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