Abstract

The impact of anomalous Wtb couplings on tWb process of the single top quark production has been probed in different schemes of tWb modeling. A special attention devotes to influence of the particular schemes to the anomalous couplings sensitivity. The distributions of representative variables demonstrate different behaviour in different simulation schemes, therefore the correct probe for anomalous Wtb couplings require specific approach to simulate BSM contribution. Special approach to search for BSM contribution in the off-shell tWb process is proposed in this paper. The approach is based on the kinematic separation of the double and single resonant contributions by means of neural network. The specific BSM properties are considered separately for the double and single resonant events. Such approach allows to add information on the anomalous Wtb coupling from simultaneous consideration of the tt¯ (double resonant) and tWb (off-shell, single resonant) contribution of tWb processes and therefore can improve the sensitivity to the anomalous Wtb couplings.

Highlights

  • There are three processes of a single top quark production at hadron colliders, they are known as s-channel, t-channel and tW-associated single top production [1]

  • The paper describes recipe of the complete analysis to search for the anomalous Wtb operators in the tWb process

  • Wtb operators in the Wtb vertex is a usage of the full scheme of tWb process with the simultaneous simulation of double and single resonant top quark production in one gauge invariant set of Feynman diagrams

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Summary

Introduction

There are three processes of a single top quark production at hadron colliders, they are known as s-channel, t-channel and tW-associated single top production [1]. Production and the Feynman diagrams of pair and single top quark production processes contribute to the same gauge invariant set.

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