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Soft Expansion of Double-Real-Virtual Corrections to Higgs Production at N$^3$LO

We present methods to compute higher orders in the threshold expansion for the one-loop production of a Higgs boson in association with two partons at hadron colliders. This process contributes to the N$^3$LO Higgs production cross section beyond the soft-virtual approximation. We use reverse unitar...

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Autores principales: Anastasiou, Charalampos, Duhr, Claude, Dulat, Falko, Furlan, Elisabetta, Herzog, Franz, Mistlberger, Bernhard
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP08(2015)051
http://cds.cern.ch/record/2016733
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author Anastasiou, Charalampos
Duhr, Claude
Dulat, Falko
Furlan, Elisabetta
Herzog, Franz
Mistlberger, Bernhard
author_facet Anastasiou, Charalampos
Duhr, Claude
Dulat, Falko
Furlan, Elisabetta
Herzog, Franz
Mistlberger, Bernhard
author_sort Anastasiou, Charalampos
collection CERN
description We present methods to compute higher orders in the threshold expansion for the one-loop production of a Higgs boson in association with two partons at hadron colliders. This process contributes to the N$^3$LO Higgs production cross section beyond the soft-virtual approximation. We use reverse unitarity to expand the phase-space integrals in the small kinematic parameters and to reduce the coefficients of the expansion to a small set of master integrals. We describe two methods for the calculation of the master integrals. The first was introduced for the calculation of the soft triple-real radiation relevant to N$^3$LO Higgs production. The second uses a particular factorization of the three body phase-space measure and the knowledge of the scaling properties of the integral itself. Our result is presented as a Laurent expansion in the dimensional regulator, although some of the master integrals are computed to all orders in this parameter.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
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spelling cern-20167332023-03-12T04:07:38Zdoi:10.1007/JHEP08(2015)051http://cds.cern.ch/record/2016733engAnastasiou, CharalamposDuhr, ClaudeDulat, FalkoFurlan, ElisabettaHerzog, FranzMistlberger, BernhardSoft Expansion of Double-Real-Virtual Corrections to Higgs Production at N$^3$LOParticle Physics - PhenomenologyWe present methods to compute higher orders in the threshold expansion for the one-loop production of a Higgs boson in association with two partons at hadron colliders. This process contributes to the N$^3$LO Higgs production cross section beyond the soft-virtual approximation. We use reverse unitarity to expand the phase-space integrals in the small kinematic parameters and to reduce the coefficients of the expansion to a small set of master integrals. We describe two methods for the calculation of the master integrals. The first was introduced for the calculation of the soft triple-real radiation relevant to N$^3$LO Higgs production. The second uses a particular factorization of the three body phase-space measure and the knowledge of the scaling properties of the integral itself. Our result is presented as a Laurent expansion in the dimensional regulator, although some of the master integrals are computed to all orders in this parameter.We present methods to compute higher orders in the threshold expansion for the one-loop production of a Higgs boson in association with two partons at hadron colliders. This process contributes to the N$^{3}$LO Higgs production cross section beyond the soft-virtual approximation. We use reverse unitarity to expand the phase-space integrals in the small kinematic parameters and to reduce the coefficients of the expansion to a small set of master integrals. We describe two methods for the calculation of the master integrals. The first was introduced for the calculation of the soft triple-real radiation relevant to N$^{3}$LO Higgs production. The second uses a particular factorization of the three body phase-space measure and the knowledge of the scaling properties of the integral itself. Our result is presented as a Laurent expansion in the dimensional regulator, although some of the master integrals are computed to all orders in this parameter.We present methods to compute higher orders in the threshold expansion for the one-loop production of a Higgs boson in association with two partons at hadron colliders. This process contributes to the N$^3$LO Higgs production cross section beyond the soft-virtual approximation. We use reverse unitarity to expand the phase-space integrals in the small kinematic parameters and to reduce the coefficients of the expansion to a small set of master integrals. We describe two methods for the calculation of the master integrals. The first was introduced for the calculation of the soft triple-real radiation relevant to N$^3$LO Higgs production. The second uses a particular factorization of the three body phase-space measure and the knowledge of the scaling properties of the integral itself. Our result is presented as a Laurent expansion in the dimensional regulator, although some of the master integrals are computed to all orders in this parameter.arXiv:1505.04110CERN-PH-TH-2015-092CP3-15-11FERMILAB-PUB-15-089-TNIKHEF-2015-016CERN-PH-TH-2015-092CP3-15-11FERMILAB-PUB-15-089-TNIKHEF-2015-016oai:cds.cern.ch:20167332015-05-15
spellingShingle Particle Physics - Phenomenology
Anastasiou, Charalampos
Duhr, Claude
Dulat, Falko
Furlan, Elisabetta
Herzog, Franz
Mistlberger, Bernhard
Soft Expansion of Double-Real-Virtual Corrections to Higgs Production at N$^3$LO
title Soft Expansion of Double-Real-Virtual Corrections to Higgs Production at N$^3$LO
title_full Soft Expansion of Double-Real-Virtual Corrections to Higgs Production at N$^3$LO
title_fullStr Soft Expansion of Double-Real-Virtual Corrections to Higgs Production at N$^3$LO
title_full_unstemmed Soft Expansion of Double-Real-Virtual Corrections to Higgs Production at N$^3$LO
title_short Soft Expansion of Double-Real-Virtual Corrections to Higgs Production at N$^3$LO
title_sort soft expansion of double-real-virtual corrections to higgs production at n$^3$lo
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP08(2015)051
http://cds.cern.ch/record/2016733
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