Coloring mixed QCD/QED evolution
arXiv:2109.09706 · doi:10.21468/SciPostPhys.13.2.034
Abstract
Parton showers are crucial components of high-energy physics calculations. Improving their modelling of QCD is an active research area since shower approximations are stumbling blocks for precision event generators. Naively, the interference between sub-dominant Standard-Model interactions and QCD can be of similar size to subleading QCD corrections. This article assesses the impact of QCD/QED interference effects in parton showers, by developing a sophisticated shower including QED, QCD at fixed color, and employing complete tree-level matrix element corrections for individual color configurations to embed interference. The resulting simulation indicates that QCD/QED interference effects are small for a simple test case and dwarfed by electro-weak resonance effects.
15 pages, 10 figures, version accepted for publication in SciPostPhys
References in corpus (12)
- An Introduction to PYTHIA 8.2
- Robust Independent Validation of Experiment and Theory: Rivet version 3
- Parton showers beyond leading logarithmic accuracy
- Colour and logarithmic accuracy in final-state parton showers
- Resummation and simulation of soft gluon effects beyond leading colour
- Parton showers with more exact color evolution
- Spin correlations in final-state parton showers and jet observables
- Improvements on dipole shower colour
- The role of colour flows in matrix element computations and Monte Carlo simulations
- Collinear Electroweak Radiation in Antenna Parton Showers
- Combining states without scale hierarchies with ordered parton showers
- Multipole Photon Radiation in the Vincia Parton Shower