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MINLO: Multi-scale improved NLO

In the present work we consider the assignment of the factorization and renormalization scales in hadron collider processes with associated jet production, at next-to-leading order (NLO) in perturbation theory. We propose a simple, definite prescription to this end, including Sudakov form factors to...

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Detalles Bibliográficos
Autores principales: Hamilton, Keith, Nason, Paolo, Zanderighi, Giulia
Lenguaje:eng
Publicado: 2012
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP10(2012)155
http://cds.cern.ch/record/1456691
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author Hamilton, Keith
Nason, Paolo
Zanderighi, Giulia
author_facet Hamilton, Keith
Nason, Paolo
Zanderighi, Giulia
author_sort Hamilton, Keith
collection CERN
description In the present work we consider the assignment of the factorization and renormalization scales in hadron collider processes with associated jet production, at next-to-leading order (NLO) in perturbation theory. We propose a simple, definite prescription to this end, including Sudakov form factors to consistently account for the distinct kinematic scales occuring in such collisions. The scheme yields results that are accurate at NLO and, for a large class of observables, it resums to all orders the large logarithms that arise from kinematic configurations involving disparate scales. In practical terms the method is most simply understood as an NLO extension of the matrix element reweighting procedure employed in tree level matrix element-parton shower merging algorithms. By way of a proof-of-concept, we apply the method to Higgs and Z boson production in association with up to two jets.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2012
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spelling cern-14566912019-09-30T06:29:59Zdoi:10.1007/JHEP10(2012)155http://cds.cern.ch/record/1456691engHamilton, KeithNason, PaoloZanderighi, GiuliaMINLO: Multi-scale improved NLOParticle Physics - PhenomenologyIn the present work we consider the assignment of the factorization and renormalization scales in hadron collider processes with associated jet production, at next-to-leading order (NLO) in perturbation theory. We propose a simple, definite prescription to this end, including Sudakov form factors to consistently account for the distinct kinematic scales occuring in such collisions. The scheme yields results that are accurate at NLO and, for a large class of observables, it resums to all orders the large logarithms that arise from kinematic configurations involving disparate scales. In practical terms the method is most simply understood as an NLO extension of the matrix element reweighting procedure employed in tree level matrix element-parton shower merging algorithms. By way of a proof-of-concept, we apply the method to Higgs and Z boson production in association with up to two jets.arXiv:1206.3572CERN-PH-TH-2012-166OUTP-12-11PMCNET-12-07oai:cds.cern.ch:14566912012-06-19
spellingShingle Particle Physics - Phenomenology
Hamilton, Keith
Nason, Paolo
Zanderighi, Giulia
MINLO: Multi-scale improved NLO
title MINLO: Multi-scale improved NLO
title_full MINLO: Multi-scale improved NLO
title_fullStr MINLO: Multi-scale improved NLO
title_full_unstemmed MINLO: Multi-scale improved NLO
title_short MINLO: Multi-scale improved NLO
title_sort minlo: multi-scale improved nlo
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP10(2012)155
http://cds.cern.ch/record/1456691
work_keys_str_mv AT hamiltonkeith minlomultiscaleimprovednlo
AT nasonpaolo minlomultiscaleimprovednlo
AT zanderighigiulia minlomultiscaleimprovednlo