We study the simulation of initial-state radiation in angular-ordered parton showers in order to investigate how different interpretations of the ordering variable affect the logarithmic accuracy of such showers. This also enables us to implement a recoil scheme which is consistent between final-state and initial-state radiation. We present optimal values of the strong coupling and intrinsic transverse momentum to be used in each version of the parton shower, tuned using Z0-boson production at the LHC at 7 TeV. With these tuned showers, we perform a phenomenological study of the Drell-Yan process at several centre-of-mass energies
A parton-shower model for hadronic collisions based on the emission properties of QCD dipoles is pro...
We investigate parton-branching methods based on transverse-momentum dependent (TMD) parton distribu...
We calculate the process pp → W+W− → e+νeµ−¯ νµ at NLO QCD, including also effective field theory (EFT...
We discuss the necessary steps for implementing an angularly ordered (AO) electroweak (EW) parton sh...
We perform a detailed study of the sources of perturbative uncertainty in parton-shower predictions ...
Monte Carlo event generators are a key tool for making theoretical predictions that can be compared ...
We perform a detailed study of the sources of perturbative uncertainty in parton-shower predictions ...
We perform a detailed analysis of next-to-leading order plus parton-shower matching in vector-boson-...
From Springer Nature via Jisc Publications RouterHistory: received 2020-03-21, rev-recd 2020-05-25, ...
HERWIG is a general-purpose Monte Carlo event generator, which includes the simulation of hard lepto...
Monte Carlo event generators, such as Herwig++, provide a full simulation of events at collider expe...
We present a simple parton-shower model that replaces the explicit angular ordering of the coherent ...
We use the POWHEG formalism in the Herwig++ event generator to match QCD real-emission matrix elemen...
We evaluate the theoretical uncertainties in next-to-leading order plus parton shower predictions fo...
We present a method to match the multi-parton states generated by the High Energy Jets Monte Carlo w...
A parton-shower model for hadronic collisions based on the emission properties of QCD dipoles is pro...
We investigate parton-branching methods based on transverse-momentum dependent (TMD) parton distribu...
We calculate the process pp → W+W− → e+νeµ−¯ νµ at NLO QCD, including also effective field theory (EFT...
We discuss the necessary steps for implementing an angularly ordered (AO) electroweak (EW) parton sh...
We perform a detailed study of the sources of perturbative uncertainty in parton-shower predictions ...
Monte Carlo event generators are a key tool for making theoretical predictions that can be compared ...
We perform a detailed study of the sources of perturbative uncertainty in parton-shower predictions ...
We perform a detailed analysis of next-to-leading order plus parton-shower matching in vector-boson-...
From Springer Nature via Jisc Publications RouterHistory: received 2020-03-21, rev-recd 2020-05-25, ...
HERWIG is a general-purpose Monte Carlo event generator, which includes the simulation of hard lepto...
Monte Carlo event generators, such as Herwig++, provide a full simulation of events at collider expe...
We present a simple parton-shower model that replaces the explicit angular ordering of the coherent ...
We use the POWHEG formalism in the Herwig++ event generator to match QCD real-emission matrix elemen...
We evaluate the theoretical uncertainties in next-to-leading order plus parton shower predictions fo...
We present a method to match the multi-parton states generated by the High Energy Jets Monte Carlo w...
A parton-shower model for hadronic collisions based on the emission properties of QCD dipoles is pro...
We investigate parton-branching methods based on transverse-momentum dependent (TMD) parton distribu...
We calculate the process pp → W+W− → e+νeµ−¯ νµ at NLO QCD, including also effective field theory (EFT...