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Pseudo-scalar Higgs boson production at N[Formula: see text] LO[Formula: see text] +N[Formula: see text] LL[Formula: see text]

We consider the production of a pseudo-scalar particle A at the LHC, and present accurate theoretical predictions for its inclusive cross section in gluon fusion. The prediction is based on combining fixed-order perturbation theory and all-order threshold resummation. At fixed order we include the e...

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Autores principales: Ahmed, Taushif, Bonvini, Marco, Kumar, M. C., Mathews, Prakash, Rana, Narayan, Ravindran, V., Rottoli, Luca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5335642/
https://www.ncbi.nlm.nih.gov/pubmed/28316498
http://dx.doi.org/10.1140/epjc/s10052-016-4510-1
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author Ahmed, Taushif
Bonvini, Marco
Kumar, M. C.
Mathews, Prakash
Rana, Narayan
Ravindran, V.
Rottoli, Luca
author_facet Ahmed, Taushif
Bonvini, Marco
Kumar, M. C.
Mathews, Prakash
Rana, Narayan
Ravindran, V.
Rottoli, Luca
author_sort Ahmed, Taushif
collection PubMed
description We consider the production of a pseudo-scalar particle A at the LHC, and present accurate theoretical predictions for its inclusive cross section in gluon fusion. The prediction is based on combining fixed-order perturbation theory and all-order threshold resummation. At fixed order we include the exact next-to-next-to-leading order (NNLO) plus an approximate next-to-next-to-next-to-leading order (N[Formula: see text] LO[Formula: see text] ) which is based on the recent computation at this order for the scalar case. We then add threshold resummation at next-to-next-to-next-to leading logarithmic accuracy (N[Formula: see text] LL[Formula: see text] ). Various forms of threshold resummation are considered, differing by the treatment of subleading terms, allowing a robust estimate of the theoretical uncertainties due to missing higher orders. With particular attention to pseudo-scalar masses of 200 and 750 GeV, we also observe that perturbative convergence is much improved when resummation is included. Additionally, results obtained with threshold resummation in direct QCD are compared with analogous results as computed in soft-collinear effective theory, which turn out to be in good agreement. We provide precise predictions for pseudo-scalar inclusive cross section at 13 TeV LHC for a wide range of masses. The results are available through updated versions of the public codes ggHiggs and TROLL.
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spelling pubmed-53356422017-03-16 Pseudo-scalar Higgs boson production at N[Formula: see text] LO[Formula: see text] +N[Formula: see text] LL[Formula: see text] Ahmed, Taushif Bonvini, Marco Kumar, M. C. Mathews, Prakash Rana, Narayan Ravindran, V. Rottoli, Luca Eur Phys J C Part Fields Regular Article - Theoretical Physics We consider the production of a pseudo-scalar particle A at the LHC, and present accurate theoretical predictions for its inclusive cross section in gluon fusion. The prediction is based on combining fixed-order perturbation theory and all-order threshold resummation. At fixed order we include the exact next-to-next-to-leading order (NNLO) plus an approximate next-to-next-to-next-to-leading order (N[Formula: see text] LO[Formula: see text] ) which is based on the recent computation at this order for the scalar case. We then add threshold resummation at next-to-next-to-next-to leading logarithmic accuracy (N[Formula: see text] LL[Formula: see text] ). Various forms of threshold resummation are considered, differing by the treatment of subleading terms, allowing a robust estimate of the theoretical uncertainties due to missing higher orders. With particular attention to pseudo-scalar masses of 200 and 750 GeV, we also observe that perturbative convergence is much improved when resummation is included. Additionally, results obtained with threshold resummation in direct QCD are compared with analogous results as computed in soft-collinear effective theory, which turn out to be in good agreement. We provide precise predictions for pseudo-scalar inclusive cross section at 13 TeV LHC for a wide range of masses. The results are available through updated versions of the public codes ggHiggs and TROLL. Springer Berlin Heidelberg 2016-12-01 2016 /pmc/articles/PMC5335642/ /pubmed/28316498 http://dx.doi.org/10.1140/epjc/s10052-016-4510-1 Text en © The Author(s) 2016 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. Funded by SCOAP3
spellingShingle Regular Article - Theoretical Physics
Ahmed, Taushif
Bonvini, Marco
Kumar, M. C.
Mathews, Prakash
Rana, Narayan
Ravindran, V.
Rottoli, Luca
Pseudo-scalar Higgs boson production at N[Formula: see text] LO[Formula: see text] +N[Formula: see text] LL[Formula: see text]
title Pseudo-scalar Higgs boson production at N[Formula: see text] LO[Formula: see text] +N[Formula: see text] LL[Formula: see text]
title_full Pseudo-scalar Higgs boson production at N[Formula: see text] LO[Formula: see text] +N[Formula: see text] LL[Formula: see text]
title_fullStr Pseudo-scalar Higgs boson production at N[Formula: see text] LO[Formula: see text] +N[Formula: see text] LL[Formula: see text]
title_full_unstemmed Pseudo-scalar Higgs boson production at N[Formula: see text] LO[Formula: see text] +N[Formula: see text] LL[Formula: see text]
title_short Pseudo-scalar Higgs boson production at N[Formula: see text] LO[Formula: see text] +N[Formula: see text] LL[Formula: see text]
title_sort pseudo-scalar higgs boson production at n[formula: see text] lo[formula: see text] +n[formula: see text] ll[formula: see text]
topic Regular Article - Theoretical Physics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5335642/
https://www.ncbi.nlm.nih.gov/pubmed/28316498
http://dx.doi.org/10.1140/epjc/s10052-016-4510-1
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