We have previously described a mathematical formulation for a parton shower based on the approximation of strongly ordered virtualities of successive parton splittings. Quantum interference, including interference among different color and spin states, was included. A practical numerical implementation strategy was left unspecified. In a subsequent paper, we showed that if we add the further approximations of taking only the leading color limit and averaging over spins, we obtain a shower evolution that can be implemented as a Markov process. In this paper, we outline a strategy for including the correlations induced by parton spins.We have previously described a mathematical formulation for a parton shower based on the approximation of str...
When the initial state evolution of a parton shower is organized according to the standard “backward...
Presented here is a technique of propagating uncertainties through the parton shower by means of an ...
Parton showers are crucial components of high-energy physics calculations. Improving their modelling...
We have previously described a mathematical formulation for a parton shower based on the approximati...
It is useful to describe a leading order parton shower as the solution of a linear equation that spe...
We specify recursive equations that could be used to generate a lowest order parton shower for hard ...
We introduce a simple procedure that resolves the long-standing question of how to account for singl...
Parton showers are widely used to generate fully exclusive final states needed to compare theoretica...
We present a simple formalism for parton-shower Markov chains. As a first step towards more complete...
We present first results from a new parton shower event generator, Deductor. Anticipating a need for...
We present a formulation for a parton shower at an arbitrary order of perturbation theory, with the ...
As part of a programme to develop parton showers with controlled logarithmic accuracy, we consider t...
The interpretation of measurements of high-energy particle collisions relies heavily on the performa...
We describe an algorithm for improving subsequent parton shower emissions by full SU(3) color correl...
A parton-shower model for hadronic collisions based on the emission properties of QCD dipoles is pro...
When the initial state evolution of a parton shower is organized according to the standard “backward...
Presented here is a technique of propagating uncertainties through the parton shower by means of an ...
Parton showers are crucial components of high-energy physics calculations. Improving their modelling...
We have previously described a mathematical formulation for a parton shower based on the approximati...
It is useful to describe a leading order parton shower as the solution of a linear equation that spe...
We specify recursive equations that could be used to generate a lowest order parton shower for hard ...
We introduce a simple procedure that resolves the long-standing question of how to account for singl...
Parton showers are widely used to generate fully exclusive final states needed to compare theoretica...
We present a simple formalism for parton-shower Markov chains. As a first step towards more complete...
We present first results from a new parton shower event generator, Deductor. Anticipating a need for...
We present a formulation for a parton shower at an arbitrary order of perturbation theory, with the ...
As part of a programme to develop parton showers with controlled logarithmic accuracy, we consider t...
The interpretation of measurements of high-energy particle collisions relies heavily on the performa...
We describe an algorithm for improving subsequent parton shower emissions by full SU(3) color correl...
A parton-shower model for hadronic collisions based on the emission properties of QCD dipoles is pro...
When the initial state evolution of a parton shower is organized according to the standard “backward...
Presented here is a technique of propagating uncertainties through the parton shower by means of an ...
Parton showers are crucial components of high-energy physics calculations. Improving their modelling...