1 research outputs found
A Direct Top-Quark Width Measurement from Lepton + Jets Events at CDF II
submitted to Phys. Rev. LettWe present a measurement of the top-quark width using events produced in collisions at Fermilab's Tevatron collider and collected by the CDF II detector. In the mode where the top quark decays to a boson and a bottom quark, we select events in which one decays leptonically and the other hadronically~(lepton + jets channel) . From a data sample corresponding to 4.3~fb of integrated luminosity, we identify 756 candidate events. The top-quark mass and the mass of boson that decays hadronically are reconstructed for each event and compared with templates of different top-quark widths~() and deviations from nominal jet energy scale~() to perform a simultaneous fit for both parameters, where is used for the {\it in situ} calibration of the jet energy scale. By applying a Feldman-Cousins approach, we establish an upper limit at 95 confidence level~(CL) of We present a measurement of the top-quark width in the lepton+jets decay channel of tt̅ events produced in pp̅ collisions at Fermilab’s Tevatron collider and collected by the CDF II detector. From a data sample corresponding to 4.3 fb-1 of integrated luminosity, we identify 756 candidate events. The top-quark mass and the mass of the hadronically decaying W boson that comes from the top-quark decay are reconstructed for each event and compared with templates of different top-quark widths (Γt) and deviations from nominal jet energy scale (ΔJES) to perform a simultaneous fit for both parameters, where ΔJES is used for the in situ calibration of the jet energy scale. By applying a Feldman-Cousins approach, we establish an upper limit at 95% confidence level (CL) of Γt<7.6 GeV and a two-sided 68% CL interval of 0.3 GeV<Γt<4.4 GeV for a top-quark mass of 172.5 GeV/c2, which are consistent with the standard model prediction.Peer reviewe