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Matching Tree-Level Matrix Elements with Interleaved Showers

We present an implementation of the so-called CKKW-L merging scheme for combining multi-jet tree-level matrix elements with parton showers. The implementation uses the transverse-momentum-ordered shower with interleaved multiple interactions as implemented in PYTHIA8. We validate our procedure using...

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Detalles Bibliográficos
Autores principales: Lonnblad, Leif, Prestel, Stefan
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP03(2012)019
http://cds.cern.ch/record/1384683
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author Lonnblad, Leif
Prestel, Stefan
author_facet Lonnblad, Leif
Prestel, Stefan
author_sort Lonnblad, Leif
collection CERN
description We present an implementation of the so-called CKKW-L merging scheme for combining multi-jet tree-level matrix elements with parton showers. The implementation uses the transverse-momentum-ordered shower with interleaved multiple interactions as implemented in PYTHIA8. We validate our procedure using e+e--annihilation into jets and vector boson production in hadronic collisions, with special attention to details in the algorithm which are formally sub-leading in character, but may have visible effects in some observables. We find substantial merging scale dependencies induced by the enforced rapidity ordering in the default PYTHIA8 shower. If this rapidity ordering is removed the merging scale dependence is almost negligible. We then also find that the shower does a surprisingly good job of describing the hardness of multi-jet events, as long as the hardest couple of jets are given by the matrix elements. The effects of using interleaved multiple interactions as compared to more simplistic ways of adding underlying-event effects in vector boson production are shown to be negligible except in a few sensitive observables. To illustrate the generality of our implementation, we also give some example results from di-boson production and pure QCD jet production in hadronic collisions.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-13846832023-08-24T02:36:57Zdoi:10.1007/JHEP03(2012)019http://cds.cern.ch/record/1384683engLonnblad, LeifPrestel, StefanMatching Tree-Level Matrix Elements with Interleaved ShowersParticle Physics - PhenomenologyWe present an implementation of the so-called CKKW-L merging scheme for combining multi-jet tree-level matrix elements with parton showers. The implementation uses the transverse-momentum-ordered shower with interleaved multiple interactions as implemented in PYTHIA8. We validate our procedure using e+e--annihilation into jets and vector boson production in hadronic collisions, with special attention to details in the algorithm which are formally sub-leading in character, but may have visible effects in some observables. We find substantial merging scale dependencies induced by the enforced rapidity ordering in the default PYTHIA8 shower. If this rapidity ordering is removed the merging scale dependence is almost negligible. We then also find that the shower does a surprisingly good job of describing the hardness of multi-jet events, as long as the hardest couple of jets are given by the matrix elements. The effects of using interleaved multiple interactions as compared to more simplistic ways of adding underlying-event effects in vector boson production are shown to be negligible except in a few sensitive observables. To illustrate the generality of our implementation, we also give some example results from di-boson production and pure QCD jet production in hadronic collisions.We present an implementation of the so-called CKKW-L merging scheme for combining multi-jet tree-level matrix elements with parton showers. The implementation uses the transverse-momentum-ordered shower with interleaved multiple interactions as implemented in PYTHIA8. We validate our procedure using e+e--annihilation into jets and vector boson production in hadronic collisions, with special attention to details in the algorithm which are formally sub-leading in character, but may have visible effects in some observables. We find substantial merging scale dependencies induced by the enforced rapidity ordering in the default PYTHIA8 shower. If this rapidity ordering is removed the merging scale dependence is almost negligible. We then also find that the shower does a surprisingly good job of describing the hardness of multi-jet events, as long as the hardest couple of jets are given by the matrix elements. The effects of using interleaved multiple interactions as compared to more simplistic ways of adding underlying-event effects in vector boson production are shown to be negligible except in a few sensitive observables. To illustrate the generality of our implementation, we also give some example results from di-boson production and pure QCD jet production in hadronic collisions.arXiv:1109.4829oai:cds.cern.ch:13846832011-09-23
spellingShingle Particle Physics - Phenomenology
Lonnblad, Leif
Prestel, Stefan
Matching Tree-Level Matrix Elements with Interleaved Showers
title Matching Tree-Level Matrix Elements with Interleaved Showers
title_full Matching Tree-Level Matrix Elements with Interleaved Showers
title_fullStr Matching Tree-Level Matrix Elements with Interleaved Showers
title_full_unstemmed Matching Tree-Level Matrix Elements with Interleaved Showers
title_short Matching Tree-Level Matrix Elements with Interleaved Showers
title_sort matching tree-level matrix elements with interleaved showers
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP03(2012)019
http://cds.cern.ch/record/1384683
work_keys_str_mv AT lonnbladleif matchingtreelevelmatrixelementswithinterleavedshowers
AT prestelstefan matchingtreelevelmatrixelementswithinterleavedshowers