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Enhancing Scalar Productions with Leptoquarks at the LHC

The Standard Model (SM), when extended with a leptoquark (LQ) and right-handed neutrinos, can have interesting new implications for Higgs physics. We show that sterile neutrinos can induce a boost to the down-type quark Yukawa interactions through a diagonal coupling associated with the quarks and a...

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Autores principales: Bhaskar, Arvind, Das, Debottam, De, Bibhabasu, Mitra, Subhadip
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.102.035002
http://cds.cern.ch/record/2713262
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author Bhaskar, Arvind
Das, Debottam
De, Bibhabasu
Mitra, Subhadip
author_facet Bhaskar, Arvind
Das, Debottam
De, Bibhabasu
Mitra, Subhadip
author_sort Bhaskar, Arvind
collection CERN
description The Standard Model (SM), when extended with a leptoquark (LQ) and right-handed neutrinos, can have interesting new implications for Higgs physics. We show that sterile neutrinos can induce a boost to the down-type quark Yukawa interactions through a diagonal coupling associated with the quarks and a scalar LQ of electromagnetic charge $1/3$. The relative change is moderately larger in the case of the first two generations of quarks, as they have vanishingly small Yukawa couplings in the SM. The enhancement in the couplings would also lead to a non-negligible contribution from the quark fusion process to the production of the 125 GeV Higgs scalar in the SM, though the gluon fusion always dominates. However, this may not be true for a general scalar. As an example, we consider a scenario with a SM-gauge-singlet scalar $\phi$ where an $\mathcal O(1)$ coupling between $\phi$ and the LQ is allowed. The $\phi q \bar{q}$ Yukawa couplings can be generated radiatively only through a loop of LQ and sterile neutrinos. Here, the quark fusion process can have a significant cross section, especially for a light $\phi$. It can even supersede the normally dominant gluon fusion process for a moderate to large value of the LQ mass. This model can be tested/constrained at the high luminosity run of the LHC through a potentially large branching fraction of the scalar to two jets.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
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spelling cern-27132622021-02-27T05:00:48Zdoi:10.1103/PhysRevD.102.035002http://cds.cern.ch/record/2713262engBhaskar, ArvindDas, DebottamDe, BibhabasuMitra, SubhadipEnhancing Scalar Productions with Leptoquarks at the LHChep-exParticle Physics - Experimenthep-phParticle Physics - PhenomenologyThe Standard Model (SM), when extended with a leptoquark (LQ) and right-handed neutrinos, can have interesting new implications for Higgs physics. We show that sterile neutrinos can induce a boost to the down-type quark Yukawa interactions through a diagonal coupling associated with the quarks and a scalar LQ of electromagnetic charge $1/3$. The relative change is moderately larger in the case of the first two generations of quarks, as they have vanishingly small Yukawa couplings in the SM. The enhancement in the couplings would also lead to a non-negligible contribution from the quark fusion process to the production of the 125 GeV Higgs scalar in the SM, though the gluon fusion always dominates. However, this may not be true for a general scalar. As an example, we consider a scenario with a SM-gauge-singlet scalar $\phi$ where an $\mathcal O(1)$ coupling between $\phi$ and the LQ is allowed. The $\phi q \bar{q}$ Yukawa couplings can be generated radiatively only through a loop of LQ and sterile neutrinos. Here, the quark fusion process can have a significant cross section, especially for a light $\phi$. It can even supersede the normally dominant gluon fusion process for a moderate to large value of the LQ mass. This model can be tested/constrained at the high luminosity run of the LHC through a potentially large branching fraction of the scalar to two jets.The Standard Model (SM), when extended with a leptoquark (LQ) and right-handed neutrinos, can have interesting new implications for Higgs physics. We show that sterile neutrinos can induce a boost to the down-type quark Yukawa interactions through a diagonal coupling associated with the quarks and a scalar LQ of electromagnetic charge 1/3. The relative change is moderately larger in the case of the first two generations of quarks, as they have vanishingly small Yukawa couplings in the SM. The enhancement in the couplings would also lead to a non-negligible contribution from the quark fusion process to the production of the 125 GeV Higgs scalar in the SM, though the gluon fusion always dominates. However, this may not be true for a general scalar. As an example, we consider a scenario with a SM-gauge-singlet scalar ϕ where an O(1) coupling between ϕ and the LQ is allowed. The ϕqq¯ Yukawa couplings can be generated radiatively only through a loop of LQ and sterile neutrinos. Here, the quark fusion process can have a significant cross section, especially for a light ϕ. It can even supersede the normally dominant gluon fusion process for a moderate to large value of the LQ mass. This model can be tested/constrained at the high luminosity run of the LHC through a potentially large branching fraction of the scalar to two jets.arXiv:2002.12571IP-BBSR/2020-2oai:cds.cern.ch:27132622020-02-28
spellingShingle hep-ex
Particle Physics - Experiment
hep-ph
Particle Physics - Phenomenology
Bhaskar, Arvind
Das, Debottam
De, Bibhabasu
Mitra, Subhadip
Enhancing Scalar Productions with Leptoquarks at the LHC
title Enhancing Scalar Productions with Leptoquarks at the LHC
title_full Enhancing Scalar Productions with Leptoquarks at the LHC
title_fullStr Enhancing Scalar Productions with Leptoquarks at the LHC
title_full_unstemmed Enhancing Scalar Productions with Leptoquarks at the LHC
title_short Enhancing Scalar Productions with Leptoquarks at the LHC
title_sort enhancing scalar productions with leptoquarks at the lhc
topic hep-ex
Particle Physics - Experiment
hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1103/PhysRevD.102.035002
http://cds.cern.ch/record/2713262
work_keys_str_mv AT bhaskararvind enhancingscalarproductionswithleptoquarksatthelhc
AT dasdebottam enhancingscalarproductionswithleptoquarksatthelhc
AT debibhabasu enhancingscalarproductionswithleptoquarksatthelhc
AT mitrasubhadip enhancingscalarproductionswithleptoquarksatthelhc