Principal Investigators | |
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Prof. Michal Czakon | RWTH Aachen University |
Dr. habil. Stefan Gieseke | Karlsruhe Institute of Technology |
With the quest for higher precision predictions for LHC physics, there comes an increasing demand for precise simulations of final states at the particle level by means of Monte Carlo event generators. The description of radiation due to strong interactions by means of a parton shower is a crucial part of these. Recent advances in parton showers are due to consistent matching to fixed-order perturbation theory and merging of different jet-multiplicity samples. Future applications require, however, an increase in the logarithmic accuracy. In this project we will develop a next-generation parton shower which is accurate to the next-to- leading-log and includes true quantum interference effects. Furthermore, we will incorporate the next-to-leading order splitting functions and double soft-emissions, i.e. the essential physical effects present at the next-to-next-to-leading order level of perturbation theory. We will take inspiration from the recent advances in fixed order subtraction schemes, which should allow for a natural matching between fixed order and resummation.