Abstract We analyse the single top production in association with the Higgs at the Large Hadron Collider (LHC) using Standard Model (SM) effective operators upto dimension six. We show that the presence of effective operators can significantly alter the existing bound on the top-Higgs Yukawa coupling. We analyse events at the LHC with 35.9 and 137(140) fb −1 integrated luminosities using both cut-based and machine learning techniques to probe new physics (NP) scale and operator coefficients addressing relevant SM background reduction. The four fermi effective operator(s) that contribute to the signal, turn out to be crucial and a limit on the top-Higgs Yukawa interaction in presence of them is obtained from the present data and for future s...
Abstract At the LHC, top quarks can be produced singly with a sizeable rate via electroweak interact...
AbstractWe consider single-top production as a probe for new physics effects at the Large Hadron Col...
We provide the complete set of predictions needed to achieve NLO accuracy in the Standard Model Effe...
We analyse the single top production in association with the Higgs at the Large Hadron Collider (LHC...
The study of Higgs boson production at large transverse momentum is one of the new frontiers for the...
Over the last decade, the enormous amount of data gathered by the Large Hadron Collider (LHC) has pu...
Abstract: The search for effective field theory deformations of the Standard Model (SM) is a major g...
We present the results of the computation of the next-to-leading order QCD corrections to the produc...
Effective interactions involving both the top quark and the Higgs field are among the least constrai...
none5siEffective interactions involving both the top quark and the Higgs field are among the least c...
The search for effective field theory deformations of the Standard Model (SM) is a major goal of par...
Abstract We present a global interpretation of Higgs, diboson, and top quark production and decay me...
In the context of the Standard Model effective field theory (SMEFT), we study the LHC sensitivity to...
Abstract In the context of the Standard Model effective field theory (SMEFT), we study the LHC sensi...
Abstract At the LHC, top quarks can be produced singly with a sizeable rate via electroweak interact...
AbstractWe consider single-top production as a probe for new physics effects at the Large Hadron Col...
We provide the complete set of predictions needed to achieve NLO accuracy in the Standard Model Effe...
We analyse the single top production in association with the Higgs at the Large Hadron Collider (LHC...
The study of Higgs boson production at large transverse momentum is one of the new frontiers for the...
Over the last decade, the enormous amount of data gathered by the Large Hadron Collider (LHC) has pu...
Abstract: The search for effective field theory deformations of the Standard Model (SM) is a major g...
We present the results of the computation of the next-to-leading order QCD corrections to the produc...
Effective interactions involving both the top quark and the Higgs field are among the least constrai...
none5siEffective interactions involving both the top quark and the Higgs field are among the least c...
The search for effective field theory deformations of the Standard Model (SM) is a major goal of par...
Abstract We present a global interpretation of Higgs, diboson, and top quark production and decay me...
In the context of the Standard Model effective field theory (SMEFT), we study the LHC sensitivity to...
Abstract In the context of the Standard Model effective field theory (SMEFT), we study the LHC sensi...
Abstract At the LHC, top quarks can be produced singly with a sizeable rate via electroweak interact...
AbstractWe consider single-top production as a probe for new physics effects at the Large Hadron Col...
We provide the complete set of predictions needed to achieve NLO accuracy in the Standard Model Effe...