Testing anomalous $$H-W$$ couplings and Higgs self-couplings via double and triple Higgs production at $$e^+e^-$$ colliders

Author:

Gonzalez-Lopez M.,Herrero M. J.,Martinez-Suarez P.

Abstract

AbstractIn the present work we study the implications at the future $$e^+e^-$$ e + e - colliders of the modified interaction vertices WWH, WWHH, HHH and HHHH within the context of the non-linear effective field theory given by the Electroweak Chiral Lagrangian. These vertices are given by four parameters, a, b, $$\kappa _3$$ κ 3 and $$\kappa _4$$ κ 4 , respectively, that are independent and without any constraint from symmetry considerations in this non-linear effective Lagrangian context, given the fact the Higgs field is a singlet. This is in contrast to the Standard Model, where the vertices are related by $$V_{WWH}^\mathrm{SM}=v V_{WWHH}^\mathrm{SM}$$ V WWH SM = v V WWHH SM and $$V_{HHH}^\mathrm{SM}=v V_{HHHH}^\mathrm{SM}$$ V HHH SM = v V HHHH SM , with $$v=246$$ v = 246 GeV. We investigate the implications of the absence of these relations in the Electroweak Chiral Lagrangian case. We explore the sensitivity to these Higgs anomalous couplings in the two main channels at these colliders: double and triple Higgs production (plus neutrinos). Concretely, we study the access to a and b in $$e^+e^- \rightarrow HH \nu {\bar{\nu }}$$ e + e - H H ν ν ¯ and the access to $$\kappa _3$$ κ 3 and $$\kappa _4$$ κ 4 in $$e^+e^- \rightarrow HHH \nu {\bar{\nu }}$$ e + e - H H H ν ν ¯ . Our study of the beyond the Standard Model couplings via triple Higgs boson production at $$e^+e^-$$ e + e - colliders is novel and shows for the first time the possible accessibility to the quartic Higgs self-coupling.

Funder

Consejo Superior de Investigaciones Científicas

European Regional Development Fund

European Commission

Publisher

Springer Science and Business Media LLC

Subject

Physics and Astronomy (miscellaneous),Engineering (miscellaneous)

Reference55 articles.

1. ATLAS Collaboration, G. Aad et. al., Combined measurements of Higgs boson production and decay using up to 80 fb$$^{-1}$$ of proton-proton collision data at $$\sqrt{s}=$$ 13 TeV collected with the ATLAS experiment. Phys. Rev. D 101, 012002 (2020). arXiv:1909.02845

2. ATLAS Collaboration, G. Aad et. al., Search for the $$HH \rightarrow b \bar{b} b \bar{b}$$ process via vector-boson fusion production using proton-proton collisions at $$\sqrt{s} = 13$$ TeV with the ATLAS detector. JHEP 07, 108 (2020). arXiv:2001.05178

3. ATLAS Collaboration, The ATLAS Collaboration, Constraints on the Higgs boson self-coupling from the combination of single-Higgs and double-Higgs production analyses performed with the ATLAS experiment

4. J. Alison et. al., Higgs boson pair production at colliders: status and perspectives in double Higgs production at colliders ed. by B. Di Micco, M. Gouzevitch, J. Mazzitelli, C. Vernieri, p. 9 (2019). arXiv:1910.00012

5. M. Cepeda et al., Report from Working Group 2: Higgs physics at the HL-LHC and HE-LHC. CERN Yellow Rep. Monogr. 7, 221–584 (2019). arXiv:1902.00134

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