We specify recursive equations that could be used to generate a lowest order parton shower for hard scattering in hadron-hadron collisions. The formalism is based on the factorization soft and collinear interactions from relatively harder interactions in QCD amplitudes. It incorporates quantum interference between different amplitudes in those cases in which the interference diagrams have leading soft or collinear singularities. It incorporates the color and spin information carried by partons emerging from a hard interaction. One motivation for this work is to have a method that can naturally cooperate with next-to-leading order calculations
We present a new approach to combine multiple NLO parton-level calculations matched to parton shower...
We carry out a systematic classification and computation of next-to-leading order kinematic power co...
A procedure is developed for using Soft Collinear Effective Theory (SCET) to generate fully exclusiv...
It is useful to describe a leading order parton shower as the solution of a linear equation that spe...
We have previously described a mathematical formulation for a parton shower based on the approximati...
We have previously described a mathematical formulation for a parton shower based on the approximati...
Programs that calculate observables in quantum chromodynamics at next-to-leading order typically suf...
We present a formulation for a parton shower at an arbitrary order of perturbation theory, with the ...
We present a method to match the multi-parton states generated by the High Energy Jets Monte Carlo w...
We present a simple formalism for parton-shower Markov chains. As a first step towards more complete...
We introduce a method for the separation of soft and collinear logarithms in QCD parton evolution at...
Shower Monte Carlo event generators have played an important role in particle physics. Modern experi...
A new method to construct event-generators based on next-to-leading order QCD matrix-elements and le...
The accuracy of parton-shower simulations is often a limiting factor in the interpretation of data f...
The interpretation of measurements of high-energy particle collisions relies heavily on the performa...
We present a new approach to combine multiple NLO parton-level calculations matched to parton shower...
We carry out a systematic classification and computation of next-to-leading order kinematic power co...
A procedure is developed for using Soft Collinear Effective Theory (SCET) to generate fully exclusiv...
It is useful to describe a leading order parton shower as the solution of a linear equation that spe...
We have previously described a mathematical formulation for a parton shower based on the approximati...
We have previously described a mathematical formulation for a parton shower based on the approximati...
Programs that calculate observables in quantum chromodynamics at next-to-leading order typically suf...
We present a formulation for a parton shower at an arbitrary order of perturbation theory, with the ...
We present a method to match the multi-parton states generated by the High Energy Jets Monte Carlo w...
We present a simple formalism for parton-shower Markov chains. As a first step towards more complete...
We introduce a method for the separation of soft and collinear logarithms in QCD parton evolution at...
Shower Monte Carlo event generators have played an important role in particle physics. Modern experi...
A new method to construct event-generators based on next-to-leading order QCD matrix-elements and le...
The accuracy of parton-shower simulations is often a limiting factor in the interpretation of data f...
The interpretation of measurements of high-energy particle collisions relies heavily on the performa...
We present a new approach to combine multiple NLO parton-level calculations matched to parton shower...
We carry out a systematic classification and computation of next-to-leading order kinematic power co...
A procedure is developed for using Soft Collinear Effective Theory (SCET) to generate fully exclusiv...