Cargando…

Ntuples for NLO Events at Hadron Colliders

We present an event-file format for the dissemination of next-to-leading-order (NLO) predictions for QCD processes at hadron colliders. The files contain all information required to compute generic jet-based infrared-safe observables at fixed order (without showering or hadronization), and to recomp...

Descripción completa

Detalles Bibliográficos
Autores principales: Bern, Z., Dixon, L.J., Febres Cordero, F., Höche, S., Ita, H., Kosower, D.A., Maitre, D.
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.cpc.2014.01.011
http://cds.cern.ch/record/1621800
_version_ 1780933206131867648
author Bern, Z.
Dixon, L.J.
Febres Cordero, F.
Höche, S.
Ita, H.
Kosower, D.A.
Maitre, D.
author_facet Bern, Z.
Dixon, L.J.
Febres Cordero, F.
Höche, S.
Ita, H.
Kosower, D.A.
Maitre, D.
author_sort Bern, Z.
collection CERN
description We present an event-file format for the dissemination of next-to-leading-order (NLO) predictions for QCD processes at hadron colliders. The files contain all information required to compute generic jet-based infrared-safe observables at fixed order (without showering or hadronization), and to recompute observables with different factorization and renormalization scales. The files also make it possible to evaluate cross sections and distributions with different parton distribution functions. This in turn makes it possible to estimate uncertainties in NLO predictions of a wide variety of observables without recomputing the short-distance matrix elements. The event files allow a user to choose among a wide range of commonly-used jet algorithms and jet-size parameters. We provide event files for a $W$ or $Z$ boson accompanied by up to four jets, and for pure-jet events with up to four jets. The files are for the Large Hadron Collider with a center of mass energy of 7 or 8 TeV. A C++ library along with a Python interface for handling these files are also provided and described in this article. The library allows a user to read the event files and recompute observables transparently for different pdf sets and factorization and renormalization scales.
id cern-1621800
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
record_format invenio
spelling cern-16218002019-09-30T06:29:59Zdoi:10.1016/j.cpc.2014.01.011http://cds.cern.ch/record/1621800engBern, Z.Dixon, L.J.Febres Cordero, F.Höche, S.Ita, H.Kosower, D.A.Maitre, D.Ntuples for NLO Events at Hadron CollidersParticle Physics - PhenomenologyWe present an event-file format for the dissemination of next-to-leading-order (NLO) predictions for QCD processes at hadron colliders. The files contain all information required to compute generic jet-based infrared-safe observables at fixed order (without showering or hadronization), and to recompute observables with different factorization and renormalization scales. The files also make it possible to evaluate cross sections and distributions with different parton distribution functions. This in turn makes it possible to estimate uncertainties in NLO predictions of a wide variety of observables without recomputing the short-distance matrix elements. The event files allow a user to choose among a wide range of commonly-used jet algorithms and jet-size parameters. We provide event files for a $W$ or $Z$ boson accompanied by up to four jets, and for pure-jet events with up to four jets. The files are for the Large Hadron Collider with a center of mass energy of 7 or 8 TeV. A C++ library along with a Python interface for handling these files are also provided and described in this article. The library allows a user to read the event files and recompute observables transparently for different pdf sets and factorization and renormalization scales.We present an event-file format for the dissemination of next-to-leading-order (NLO) predictions for QCD processes at hadron colliders. The files contain all information required to compute generic jet-based infrared-safe observables at fixed order (without showering or hadronization), and to recompute observables with different factorization and renormalization scales. The files also make it possible to evaluate cross sections and distributions with different parton distribution functions. This in turn makes it possible to estimate uncertainties in NLO predictions of a wide variety of observables without recomputing the short-distance matrix elements. The event files allow a user to choose among a wide range of commonly-used jet algorithms and jet-size parameters. We provide event files for a $W$ or $Z$ boson accompanied by up to four jets, and for pure-jet events with up to four jets. The files are for the Large Hadron Collider with a center of mass energy of 7 or 8 TeV. A C++ library along with a Python interface for handling these files are also provided and described in this article. The library allows a user to read the event files and recompute observables transparently for different pdf sets and factorization and renormalization scales.We present an event-file format for the dissemination of next-to-leading-order (NLO) predictions for QCD processes at hadron colliders. The files contain all information required to compute generic jet-based infrared-safe observables at fixed order (without showering or hadronization), and to recompute observables with different factorization and renormalization scales. The files also make it possible to evaluate cross sections and distributions with different parton distribution functions. This in turn makes it possible to estimate uncertainties in NLO predictions of a wide variety of observables without recomputing the short-distance matrix elements. The event files allow a user to choose among a wide range of commonly-used jet algorithms and jet-size parameters.UCLA-13-TEP-108SLAC-PUB-15739SB-F-422-13IPHT-T13-228IPPP-13-86CERN-PH-TH-2013-243arXiv:1310.7439UCLA-13-TEP-108SLAC-PUB-15739SB-F-422-13IPHT-T13-228IPPP-13-86CERN-PH-TH-2013-243oai:cds.cern.ch:16218002013-10-28
spellingShingle Particle Physics - Phenomenology
Bern, Z.
Dixon, L.J.
Febres Cordero, F.
Höche, S.
Ita, H.
Kosower, D.A.
Maitre, D.
Ntuples for NLO Events at Hadron Colliders
title Ntuples for NLO Events at Hadron Colliders
title_full Ntuples for NLO Events at Hadron Colliders
title_fullStr Ntuples for NLO Events at Hadron Colliders
title_full_unstemmed Ntuples for NLO Events at Hadron Colliders
title_short Ntuples for NLO Events at Hadron Colliders
title_sort ntuples for nlo events at hadron colliders
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/j.cpc.2014.01.011
http://cds.cern.ch/record/1621800
work_keys_str_mv AT bernz ntuplesfornloeventsathadroncolliders
AT dixonlj ntuplesfornloeventsathadroncolliders
AT febrescorderof ntuplesfornloeventsathadroncolliders
AT hoches ntuplesfornloeventsathadroncolliders
AT itah ntuplesfornloeventsathadroncolliders
AT kosowerda ntuplesfornloeventsathadroncolliders
AT maitred ntuplesfornloeventsathadroncolliders