The study of Higgs boson production at large transverse momentum is one of the new frontiers for the LHC Higgs physics programme. This paper considers boosted Higgs production in the Standard Model Effective Field Theory (SMEFT). We focus on the gluon fusion and $t{\bar t}H$ production processes and study the effects of three dimension-6 operators: the top Yukawa operator, the gluon-Higgs effective coupling and the chromomagnetic dipole operator of the top quark. We perform a detailed study of the sensitivity of current and future LHC data to the corresponding Wilson coefficients, consistently accounting for their renormalisation group evolution. We compare the sensitivities obtained with only linear and linear + quadratic terms in the SMEF...
We analyse the single top production in association with the Higgs at the Large Hadron Collider (LHC...
We study the production of Higgs bosons at high transverse momenta via vector-boson fusion (VBF) in ...
We provide the complete set of predictions needed to achieve NLO accuracy in the Standard Model Effe...
The study of Higgs boson production at large transverse momentum is one of the new frontiers for the...
We present a global interpretation of Higgs, diboson, and top quark production and decay measurement...
Abstract We analyse the single top production in association with the Higgs at the Large Hadron Coll...
We consider Higgs boson production through gluon fusion at large transverse momentum in hadronic col...
After the discovery of the Higgs boson in 2012, LHC is currently study-ing its properties. The measu...
After the Higgs boson discovery, LHC can be used as a precision machine to explore its properties. I...
Over the last decade, the enormous amount of data gathered by the Large Hadron Collider (LHC) has pu...
After the Higgs boson discovery, LHC turned into the precision machine to explore its properties. In...
Abstract: The search for effective field theory deformations of the Standard Model (SM) is a major g...
The search for effective field theory deformations of the Standard Model (SM) is a major goal of par...
We present the results of the computation of the next-to-leading order QCD corrections to the produc...
We analyse the single top production in association with the Higgs at the Large Hadron Collider (LHC...
We study the production of Higgs bosons at high transverse momenta via vector-boson fusion (VBF) in ...
We provide the complete set of predictions needed to achieve NLO accuracy in the Standard Model Effe...
The study of Higgs boson production at large transverse momentum is one of the new frontiers for the...
We present a global interpretation of Higgs, diboson, and top quark production and decay measurement...
Abstract We analyse the single top production in association with the Higgs at the Large Hadron Coll...
We consider Higgs boson production through gluon fusion at large transverse momentum in hadronic col...
After the discovery of the Higgs boson in 2012, LHC is currently study-ing its properties. The measu...
After the Higgs boson discovery, LHC can be used as a precision machine to explore its properties. I...
Over the last decade, the enormous amount of data gathered by the Large Hadron Collider (LHC) has pu...
After the Higgs boson discovery, LHC turned into the precision machine to explore its properties. In...
Abstract: The search for effective field theory deformations of the Standard Model (SM) is a major g...
The search for effective field theory deformations of the Standard Model (SM) is a major goal of par...
We present the results of the computation of the next-to-leading order QCD corrections to the produc...
We analyse the single top production in association with the Higgs at the Large Hadron Collider (LHC...
We study the production of Higgs bosons at high transverse momenta via vector-boson fusion (VBF) in ...
We provide the complete set of predictions needed to achieve NLO accuracy in the Standard Model Effe...