Exploring sizable triple Higgs couplings in the 2HDM

Abstract An important task at future colliders is the measurement of the triple Higgs coupling. Depending on its size relative to the Standard Model (SM) value, certain collider options result in a higher experimental accuracy. Within the framework of Two Higgs Doublet Models (2HDM) types I and II w...

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Main Authors: F. Arco, S. Heinemeyer, M. J. Herrero
Format: Article
Language:English
Published: SpringerOpen 2020-09-01
Series:European Physical Journal C: Particles and Fields
Online Access:http://link.springer.com/article/10.1140/epjc/s10052-020-8406-8
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spelling doaj-1dfb903c83874a64b2106bcc6afca8b22020-11-25T02:51:19ZengSpringerOpenEuropean Physical Journal C: Particles and Fields1434-60441434-60522020-09-0180913310.1140/epjc/s10052-020-8406-8Exploring sizable triple Higgs couplings in the 2HDMF. Arco0S. Heinemeyer1M. J. Herrero2Departamento de Física Teórica, Universidad Autónoma de MadridInstituto de Física Teórica (UAM/CSIC), Universidad Autónoma de MadridDepartamento de Física Teórica, Universidad Autónoma de MadridAbstract An important task at future colliders is the measurement of the triple Higgs coupling. Depending on its size relative to the Standard Model (SM) value, certain collider options result in a higher experimental accuracy. Within the framework of Two Higgs Doublet Models (2HDM) types I and II we investigate the allowed ranges for all triple Higgs couplings involving at least one light, SM-like Higgs boson. We take into account theoretical constraints (unitarity, stability), experimental constraints from direct Higgs-boson searches, measurements of the SM-like Higgs-boson properties, flavor observables and electroweak precision data. We find that the SM-type triple Higgs coupling w.r.t. its SM value, $$\lambda _{hhh}/\lambda _{\mathrm {SM}}$$ λ hhh / λ SM , can range between $$\sim -0.5$$ ∼ - 0.5 and $$\sim 1.5$$ ∼ 1.5 . Depending on which value is realized, the HL-LHC can compete with, or is clearly inferior to the ILC. We find the coupling $$\lambda _{hhH}$$ λ hhH between $$\sim -1.5$$ ∼ - 1.5 and $$\sim 1.5$$ ∼ 1.5 . Triple Higgs couplings involving two heavy Higgs bosons, $$\lambda _{hHH}$$ λ hHH , $$\lambda _{hAA}$$ λ hAA and $$\lambda _{hH^+H^-}$$ λ h H + H - can reach values up to $${{\mathcal {O}}}(10)$$ O ( 10 ) , roughly independent of the 2HDM type. This can lead to potentially strongly enhanced production of two Higgs-bosons at the HL-LHC or high-energy $$e^+e^-$$ e + e - colliders.http://link.springer.com/article/10.1140/epjc/s10052-020-8406-8
collection DOAJ
language English
format Article
sources DOAJ
author F. Arco
S. Heinemeyer
M. J. Herrero
spellingShingle F. Arco
S. Heinemeyer
M. J. Herrero
Exploring sizable triple Higgs couplings in the 2HDM
European Physical Journal C: Particles and Fields
author_facet F. Arco
S. Heinemeyer
M. J. Herrero
author_sort F. Arco
title Exploring sizable triple Higgs couplings in the 2HDM
title_short Exploring sizable triple Higgs couplings in the 2HDM
title_full Exploring sizable triple Higgs couplings in the 2HDM
title_fullStr Exploring sizable triple Higgs couplings in the 2HDM
title_full_unstemmed Exploring sizable triple Higgs couplings in the 2HDM
title_sort exploring sizable triple higgs couplings in the 2hdm
publisher SpringerOpen
series European Physical Journal C: Particles and Fields
issn 1434-6044
1434-6052
publishDate 2020-09-01
description Abstract An important task at future colliders is the measurement of the triple Higgs coupling. Depending on its size relative to the Standard Model (SM) value, certain collider options result in a higher experimental accuracy. Within the framework of Two Higgs Doublet Models (2HDM) types I and II we investigate the allowed ranges for all triple Higgs couplings involving at least one light, SM-like Higgs boson. We take into account theoretical constraints (unitarity, stability), experimental constraints from direct Higgs-boson searches, measurements of the SM-like Higgs-boson properties, flavor observables and electroweak precision data. We find that the SM-type triple Higgs coupling w.r.t. its SM value, $$\lambda _{hhh}/\lambda _{\mathrm {SM}}$$ λ hhh / λ SM , can range between $$\sim -0.5$$ ∼ - 0.5 and $$\sim 1.5$$ ∼ 1.5 . Depending on which value is realized, the HL-LHC can compete with, or is clearly inferior to the ILC. We find the coupling $$\lambda _{hhH}$$ λ hhH between $$\sim -1.5$$ ∼ - 1.5 and $$\sim 1.5$$ ∼ 1.5 . Triple Higgs couplings involving two heavy Higgs bosons, $$\lambda _{hHH}$$ λ hHH , $$\lambda _{hAA}$$ λ hAA and $$\lambda _{hH^+H^-}$$ λ h H + H - can reach values up to $${{\mathcal {O}}}(10)$$ O ( 10 ) , roughly independent of the 2HDM type. This can lead to potentially strongly enhanced production of two Higgs-bosons at the HL-LHC or high-energy $$e^+e^-$$ e + e - colliders.
url http://link.springer.com/article/10.1140/epjc/s10052-020-8406-8
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AT sheinemeyer exploringsizabletriplehiggscouplingsinthe2hdm
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