We present the predictions at next-to-leading order (NLO) in the strong coupling for the single-top cross section in the t channel at the Tevatron and the LHC. Our calculation starts from the 2→3 Born amplitude gq→tb̄q′, keeping the b-quark mass nonzero. A comparison is performed with a traditional NLO calculation of this channel based on the 2→2 Born process with a bottom quark in the initial state. In particular, the effect of using kinematic approximations and resumming logarithms of the form log (Q2/mb2) in the 2→2 process is assessed. Our results show that the 2→3 calculation is very well behaved and in substantial agreement with the predictions based on the 2→2 process
The study of the properties of the top quark is one of the main goals of the Large Hadron Collider ...
We present updated predictions for the total production cross section of top-quark pairs at the Teva...
We present a detailed phenomenological study of the next-to-next-to-leading order (NNLO) QCD correct...
We present the predictions at next-to-leading order (NLO) in the strong coupling for the single-top ...
We present the predictions at next-to-leading order (NLO) in the strong coupling for the single-top ...
We present the next-to-leading order calculation for single-top production at hadron colliders. Our ...
We present updated NLO predictions for the electroweak t-channel production of heavy quarks at the T...
We present updated NLO predictions for the electroweak t-channel production of heavy quarks at the T...
We present updated NLO predictions for the electroweak t-channel production of heavy quarks at the T...
none4siWe present updated NLO predictions for the electroweak t-channel production of heavy quarks a...
We present updated NLO predictions for the electroweak t-channel production of heavy quarks at the T...
We present updated NLO predictions for the electroweak t-channel production of heavy quarks at the T...
We present updated NLO predictions for the electroweak t-channel production of heavy quarks at the T...
We present updated predictions for the total production cross section of top-quark pairs at the Teva...
We present a study of the $t$-channel mode of single top quark production at the upgraded Tevatron $...
The study of the properties of the top quark is one of the main goals of the Large Hadron Collider ...
We present updated predictions for the total production cross section of top-quark pairs at the Teva...
We present a detailed phenomenological study of the next-to-next-to-leading order (NNLO) QCD correct...
We present the predictions at next-to-leading order (NLO) in the strong coupling for the single-top ...
We present the predictions at next-to-leading order (NLO) in the strong coupling for the single-top ...
We present the next-to-leading order calculation for single-top production at hadron colliders. Our ...
We present updated NLO predictions for the electroweak t-channel production of heavy quarks at the T...
We present updated NLO predictions for the electroweak t-channel production of heavy quarks at the T...
We present updated NLO predictions for the electroweak t-channel production of heavy quarks at the T...
none4siWe present updated NLO predictions for the electroweak t-channel production of heavy quarks a...
We present updated NLO predictions for the electroweak t-channel production of heavy quarks at the T...
We present updated NLO predictions for the electroweak t-channel production of heavy quarks at the T...
We present updated NLO predictions for the electroweak t-channel production of heavy quarks at the T...
We present updated predictions for the total production cross section of top-quark pairs at the Teva...
We present a study of the $t$-channel mode of single top quark production at the upgraded Tevatron $...
The study of the properties of the top quark is one of the main goals of the Large Hadron Collider ...
We present updated predictions for the total production cross section of top-quark pairs at the Teva...
We present a detailed phenomenological study of the next-to-next-to-leading order (NNLO) QCD correct...