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Top-quark mass measurement from dilepton events at CDF II
Authors:Abulencia A  Acosta D  Adelman J  Affolder T  Akimoto T  Albrow M G  Ambrose D  Amerio S  Amidei D  Anastassov A  Anikeev K  Annovi A  Antos J  Aoki M  Apollinari G  Arguin J-F  Arisawa T  Artikov A  Ashmanskas W  Attal A  Azfar F  Azzi-Bacchetta P  Azzurri P  Bacchetta N  Bachacou H  Badgett W  Barbaro-Galtieri A  Barnes V E  Barnett B A  Baroiant S  Bartsch V  Bauer G  Bedeschi F  Behari S  Belforte S  Bellettini G  Bellinger J  Belloni A  Ben-Haim E  Benjamin D  Beretvas A  Beringer J  Berry T  Bhatti A  Binkley M  Bisello D  Bishai M  Blair R E  Blocker C  Bloom K  Blumenfeld B  Bocci A  Bodek A  Boisvert V  Bolla G  Bolshov A  Bortoletto D
Institution:University of Illinois, Urbana, Illinois 61801, USA.
Abstract:We report a measurement of the top-quark mass using events collected by the CDF II detector from pp collisions at square root of s = 1.96 TeV at the Fermilab Tevatron. We calculate a likelihood function for the top-quark mass in events that are consistent with tt --> bl(-)nu(l)bl'+ nu'(l) decays. The likelihood is formed as the convolution of the leading-order matrix element and detector resolution functions. The joint likelihood is the product of likelihoods for each of 33 events collected in 340 pb(-1) of integrated luminosity, yielding a top-quark mass M(t) = 165.2 +/- 6.1(stat) +/- 3.4(syst) GeV/c2. This first application of a matrix-element technique to tt --> bl+ nu(l)bl'- nu(l') decays gives the most precise single measurement of M(t) in dilepton events. Combined with other CDF run II measurements using dilepton events, we measure M(t) = 167.9 +/- 5.2(stat) +/- 3.7(syst) GeV/c2.
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