Monte Carlo event generators are a key tool for making theoretical predictions that can be compared with the results of collider experiments, our most accurate probes of fundamental particle physics. New developments in the way parton shower accuracy is assessed have led us to re-examine the accuracy of the angular-ordered parton shower in the Herwig 7 event generator, focussing on the way recoil is handled after successive emissions. We first discuss how the evolution variable is defined in the Herwig angular-ordered shower and how the choice of this definition determines the recoil scheme. We then show how the recoil scheme can affect the logarithmic accuracy of final-state radiation produced by the algorithm. As part of this investigati...
Parton showers are among the most widely used tools in collider physics. Despite their key importanc...
A rather clean environment for property measurements at the LHC is provided by vector-boson fusion (...
We formulate some first fundamental elements of an approach for assessing the logarithmic accuracy o...
We study the simulation of initial-state radiation in angular-ordered parton showers in order to inv...
The corrections to parton shower approximations with multiple leading order matrix elements and the ...
We discuss the necessary steps for implementing an angularly ordered (AO) electroweak (EW) parton sh...
We study the mismatch between a full calculation of non-global single-logarithms in the large-N_c li...
The accuracy of parton-shower simulations is often a limiting factor in the interpretation of data f...
Monte Carlo event generators, such as Herwig++, provide a full simulation of events at collider expe...
This thesis discusses recent developments for the simulation of particle physics in the light of th...
We perform a detailed study of the sources of perturbative uncertainty in parton-shower predictions ...
We present a new approach to combine multiple NLO parton-level calculations matched to parton shower...
We are developing NLO event generators for hadron collision interactions based on the limited leadin...
We discuss the theoretical bases that underpin the automation of the computations of tree-level and ...
We present a simple parton-shower model that replaces the explicit angular ordering of the coherent ...
Parton showers are among the most widely used tools in collider physics. Despite their key importanc...
A rather clean environment for property measurements at the LHC is provided by vector-boson fusion (...
We formulate some first fundamental elements of an approach for assessing the logarithmic accuracy o...
We study the simulation of initial-state radiation in angular-ordered parton showers in order to inv...
The corrections to parton shower approximations with multiple leading order matrix elements and the ...
We discuss the necessary steps for implementing an angularly ordered (AO) electroweak (EW) parton sh...
We study the mismatch between a full calculation of non-global single-logarithms in the large-N_c li...
The accuracy of parton-shower simulations is often a limiting factor in the interpretation of data f...
Monte Carlo event generators, such as Herwig++, provide a full simulation of events at collider expe...
This thesis discusses recent developments for the simulation of particle physics in the light of th...
We perform a detailed study of the sources of perturbative uncertainty in parton-shower predictions ...
We present a new approach to combine multiple NLO parton-level calculations matched to parton shower...
We are developing NLO event generators for hadron collision interactions based on the limited leadin...
We discuss the theoretical bases that underpin the automation of the computations of tree-level and ...
We present a simple parton-shower model that replaces the explicit angular ordering of the coherent ...
Parton showers are among the most widely used tools in collider physics. Despite their key importanc...
A rather clean environment for property measurements at the LHC is provided by vector-boson fusion (...
We formulate some first fundamental elements of an approach for assessing the logarithmic accuracy o...