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We study the anomalous FCNC $tqgamma$ and $tqg$ couplings via $ppto Wbgamma+X$ signal process including realistic detector effects for both leptonic and hadronic decay channels of the W boson at 100 TeV FCC-hh. The relevant background are considered in the cut based analysis to obtain not only limits on the anomalous $lambda$ and $zeta$ couplings but also branching ratios of $tto qgamma$ and $tto qg$ decay channels. We find that the sensitivity to the branching ratio of $t to q gamma$ channel is three order better than the available LHC experimental limits, and it is comparable for the branching ratio of the $tto qg$ decay channel with an integrated luminosity of 10 ab$^{-1}$ at 2$sigma$ significance level.
We study the sensitivity of anomalous neutral triple gauge couplings ($aNTGC$) via $pp rightarrow ZZ$ production in the 4$ell$ channel at 100 TeV centre of mass energy of future circular hadron collider, verbFCC-hh. The analysis including the realist
We investigate the prospects for discovering the Flavour Changing Neutral Current (FCNC) $tqZ$ couplings via two production processes yielding trilepton signals: top quark pair production $ppto tbar{t}$ with one top decaying to the $Z$ boson and one
We investigate the anomalous flavour changing neutral current (FCNC) interactions of top quark through the process $e^{-}pto e^{-}W^{pm}q+X$. We calculate the signal and background cross sections in electron proton collisions at Large Hadron electron
The top quark flavor changing neutral current (FCNC) processes are extremely suppressed within the Standard Model (SM) of particle physics. However, they could be enhanced in a new physics model Beyond the Standard Model (BSM). The top quark FCNC int
This paper presents the projections on the anomalous neutral triple gauge couplings ($aNTGC$) via $pp rightarrow ZZ$ production in the 2$ell$2$ u$ final state at a 100 TeV proton-proton collider, verbFCC-hh. %100 TeV center of mass energy of The real