Merging NLO Multi-jet Calculations with Improved Unitarization
arXiv:1705.06700 · doi:10.1140/epjc/s10052-018-5723-2
Abstract
We present an algorithm to combine multiple matrix elements at LO and NLO with a parton shower. We build on the unitarized merging paradigm. The inclusion of higher orders and multiplicities reduce the scale uncertainties for observables sensitive to hard emissions, while preserving the features of inclusive quantities. The combination allows further soft and collinear emissions to be predicted by the all-order parton shower approximation. We inspect the impact of terms that are formally but not parametrically negligible. We present results for a number of collider observables where multiple jets are observed, either on their own or in the presence of additional uncoloured particles. The algorithm is implemented in the event generator Herwig.
29 pages, 25 figures
References in corpus (18)
- The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations
- An Introduction to PYTHIA 8.2
- Herwig++ Physics and Manual
- LHAPDF6: parton density access in the LHC precision era
- Parton distributions in the LHC era: MMHT 2014 PDFs
- Herwig 7.0 / Herwig++ 3.0 Release Note
- Comparative study of various algorithms for the merging of parton showers and matrix elements in hadronic collisions
- GoSam-2.0: a tool for automated one-loop calculations within the Standard Model and beyond
- NLO QCD matrix elements + parton showers in e+e- -> hadrons
- Drell-Yan lepton pair production at NNLO QCD with parton showers
- Higgs-boson production through gluon fusion at NNLO QCD with parton showers
- Measurements of the W production cross sections in association with jets with the ATLAS detector
- Automating the POWHEG method in Sherpa
- A modified CKKW matrix element merging approach to angular-ordered parton showers
- Extending CKKW-merging to One-Loop Matrix Elements
- A Positive-Weight Next-to-Leading Order Monte Carlo Simulation of Drell-Yan Vector Boson Production
- A Positive-Weight Next-to-Leading Order Monte Carlo Simulation for Higgs Boson Production
- Extending the MINLO method
Cited by in corpus (27)
- Challenges in Monte Carlo event generator software for High-Luminosity LHC
- Event Generators for High-Energy Physics Experiments
- Color matrix element corrections for parton showers
- Jet Angularities in Z+jet production at the LHC
- PanScales parton showers for hadron collisions: formulation and fixed-order studies
- Precise determination of from a global fit of energy-energy correlation to NNLO+NNLL predictions
- Jet cross sections at the LHC and the quest for higher precision
- Parton Shower and Matching Uncertainties in Top Quark Pair Production with Herwig 7
- Towards NNLO+PS Matching with Sector Showers
- Multi-jet merging in a variable flavor number scheme
- Next-to-leading-logarithmic PanScales showers for Deep Inelastic Scattering and Vector Boson Fusion
- A Positive Resampler for Monte Carlo Events with Negative Weights
- A study of collider signatures for two Higgs doublet models with a Pseudoscalar mediator to Dark Matter
- Efficient multi-jet merging with the Vincia sector shower
- Matching N3LO QCD calculations to parton showers
- Multi-jet Merging with TMD Parton Branching
- Vector Bosons and Jets in Proton Collisions
- MINLO t-channel single-top plus jet
- NLO Multijet Merging for Higgs Production Beyond the VBF Approximation
- Soft QCD Effects in VBS/VBF Topologies
- Scale and Scheme Variations in Unitarized NLO Merging
- KrkNLO matching for colour-singlet processes
- Electroweak Radiative Corrections in Precision LHC Measurements of +jets
- Higgs production via vector-boson fusion at the LHC
- TMD Evolution and Multi-Jet Merging
- Multi-Jet Production in Deep Inelastic Scattering with Pythia
- HYTREES: Combining Matrix Elements and Parton Shower for Hypothesis Testing