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Light quark Yukawas in triboson final states

Triple heavy vector boson production, pp → VVV (V = W, Z), has recently been observed for the first time. We propose that precision measurements of this process provide an excellent probe of the first generation light quark Yukawa couplings. Modified quark interactions with the off-shell Higgs in th...

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Autores principales: Falkowski, Adam, Ganguly, Sanmay, Gras, Phillippe, No, Jose Miguel, Tobioka, Kohsaku, Vignaroli, Natascia, You, Tevong
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP04(2021)023
http://cds.cern.ch/record/2745524
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author Falkowski, Adam
Ganguly, Sanmay
Gras, Phillippe
No, Jose Miguel
Tobioka, Kohsaku
Vignaroli, Natascia
You, Tevong
author_facet Falkowski, Adam
Ganguly, Sanmay
Gras, Phillippe
No, Jose Miguel
Tobioka, Kohsaku
Vignaroli, Natascia
You, Tevong
author_sort Falkowski, Adam
collection CERN
description Triple heavy vector boson production, pp → VVV (V = W, Z), has recently been observed for the first time. We propose that precision measurements of this process provide an excellent probe of the first generation light quark Yukawa couplings. Modified quark interactions with the off-shell Higgs in this process lead to a rapid growth of the partonic cross sections with energy, which manifests in an enhanced p$_{T}$ distribution of the final state leptons and quarks. We quantify this effect and estimate the present and future 2σ sensitivity to the up, down, and strange Yukawas. In particular, we find that HL-LHC can reach $ \mathcal{O}(400) $ sensitivity to the down Yukawa relative to the Standard Model value, improving the current sensitivity in this process by a factor of 10, and which can be further improved to $ \mathcal{O}(30) $ at FCC-hh. This is competitive with and complementary to constraints from global fits and other on-shell probes of the first generation Yukawas. The triboson sensitivity at HL-LHC corresponds to probing dimension-6 SMEFT operators suppressed by an $ \mathcal{O}(1) $ TeV scale, similarly to other LHC Higgs probes.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
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spelling cern-27455242021-11-13T10:51:56Zdoi:10.1007/JHEP04(2021)023http://cds.cern.ch/record/2745524engFalkowski, AdamGanguly, SanmayGras, PhillippeNo, Jose MiguelTobioka, KohsakuVignaroli, NatasciaYou, TevongLight quark Yukawas in triboson final stateshep-exParticle Physics - Experimenthep-phParticle Physics - PhenomenologyTriple heavy vector boson production, pp → VVV (V = W, Z), has recently been observed for the first time. We propose that precision measurements of this process provide an excellent probe of the first generation light quark Yukawa couplings. Modified quark interactions with the off-shell Higgs in this process lead to a rapid growth of the partonic cross sections with energy, which manifests in an enhanced p$_{T}$ distribution of the final state leptons and quarks. We quantify this effect and estimate the present and future 2σ sensitivity to the up, down, and strange Yukawas. In particular, we find that HL-LHC can reach $ \mathcal{O}(400) $ sensitivity to the down Yukawa relative to the Standard Model value, improving the current sensitivity in this process by a factor of 10, and which can be further improved to $ \mathcal{O}(30) $ at FCC-hh. This is competitive with and complementary to constraints from global fits and other on-shell probes of the first generation Yukawas. The triboson sensitivity at HL-LHC corresponds to probing dimension-6 SMEFT operators suppressed by an $ \mathcal{O}(1) $ TeV scale, similarly to other LHC Higgs probes.Triple heavy vector boson production, $p p \to VVV$$(V = W, Z)$, has recently been observed for the first time. We propose that precision measurements of this process provide an excellent probe of the first generation light quark Yukawa couplings. Modified quark interactions with the off-shell Higgs in this process lead to a rapid growth of the partonic cross sections with energy, which manifests in an enhanced $p_T$ distribution of the final state leptons and quarks. We quantify this effect and estimate the present and future 2$\sigma$ sensitivity to the up, down, and strange Yukawas. In particular, we find that HL-LHC can reach $\mathcal{O}(400)$ sensitivity to the down Yukawa relative to the Standard Model value, improving the current sensitivity in this process by a factor of $10$, and which can be further improved to $\mathcal{O}(30)$ at FCC-hh. This is competitive with and complementary to constraints from global fits and other on-shell probes of the first generation Yukawas. The triboson sensitivity at HL-LHC corresponds to probing dimension-6 SMEFT operators suppressed by an $\mathcal{O}(1)$ TeV scale, similarly to other LHC Higgs probes.arXiv:2011.09551CERN-TH-2020-191; IFT-UAM/CSIC-20-158; FTUAM-20-25; KEK-TH-2276;oai:cds.cern.ch:27455242020-11-18
spellingShingle hep-ex
Particle Physics - Experiment
hep-ph
Particle Physics - Phenomenology
Falkowski, Adam
Ganguly, Sanmay
Gras, Phillippe
No, Jose Miguel
Tobioka, Kohsaku
Vignaroli, Natascia
You, Tevong
Light quark Yukawas in triboson final states
title Light quark Yukawas in triboson final states
title_full Light quark Yukawas in triboson final states
title_fullStr Light quark Yukawas in triboson final states
title_full_unstemmed Light quark Yukawas in triboson final states
title_short Light quark Yukawas in triboson final states
title_sort light quark yukawas in triboson final states
topic hep-ex
Particle Physics - Experiment
hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP04(2021)023
http://cds.cern.ch/record/2745524
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